1Which of the following is a universal feature found in all living cells?
Universal features of cells
Easy
A.Plasma membrane
B.Nucleus
C.Chloroplast
D.Cell wall
Correct Answer: Plasma membrane
Explanation:
All cells, whether prokaryotic or eukaryotic, are bounded by a plasma membrane that separates the cell interior from its environment.
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2Which molecule serves as the universal carrier of genetic information in all cells?
Universal features of cells
Easy
A.Protein
B.Lipid
C.RNA
D.DNA
Correct Answer: DNA
Explanation:
DNA is the hereditary material in all cells, storing the genetic instructions needed for growth, function, and reproduction.
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3Which element is the most abundant by mass in living cells (excluding water considerations)?
cell chemistry and biosynthesis - chemical organization of cells
Easy
A.Carbon
B.Phosphorus
C.Oxygen
D.Nitrogen
Correct Answer: Oxygen
Explanation:
By mass, oxygen is the most abundant element in cells, largely because of the high water content of cells.
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4The monomer unit of proteins is the:
cell chemistry and biosynthesis - chemical organization of cells
Easy
A.Amino acid
B.Nucleotide
C.Fatty acid
D.Monosaccharide
Correct Answer: Amino acid
Explanation:
Proteins are polymers built from amino acids joined by peptide bonds.
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5The widely accepted model describing the structure of the cell membrane is the:
Internal organization of the cell - cell membranes: structure of cell membranes and concepts related to compartmentalization in eukaryotic cells
Easy
A.Sandwich model
B.Double helix model
C.Lock and key model
D.Fluid mosaic model
Correct Answer: Fluid mosaic model
Explanation:
The fluid mosaic model, proposed by Singer and Nicolson, describes the membrane as a fluid lipid bilayer with embedded proteins that can move laterally.
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6The basic structural framework of the cell membrane is formed by:
Internal organization of the cell - cell membranes: structure of cell membranes and concepts related to compartmentalization in eukaryotic cells
Easy
A.A protein sheet
B.A cellulose network
C.A carbohydrate coat
D.A phospholipid bilayer
Correct Answer: A phospholipid bilayer
Explanation:
The membrane is primarily a bilayer of phospholipids, with hydrophilic heads facing outward and hydrophobic tails facing inward.
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7Compartmentalization in eukaryotic cells is mainly achieved by:
Internal organization of the cell - cell membranes: structure of cell membranes and concepts related to compartmentalization in eukaryotic cells
Easy
A.The cell wall
B.The cytoskeleton alone
C.Ribosomes
D.Membrane-bound organelles
Correct Answer: Membrane-bound organelles
Explanation:
Eukaryotic cells divide their interior into distinct compartments using membrane-bound organelles, allowing specialized reactions to occur separately.
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8Which of the following is NOT a component of the cytoskeleton?
Structure and organization of cytoskeleton
Easy
A.Ribosomes
B.Intermediate filaments
C.Microfilaments
D.Microtubules
Correct Answer: Ribosomes
Explanation:
The cytoskeleton consists of microtubules, microfilaments (actin), and intermediate filaments. Ribosomes are involved in protein synthesis, not the cytoskeleton.
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9Microtubules are primarily composed of the protein:
Structure and organization of cytoskeleton
Easy
A.Keratin
B.Actin
C.Tubulin
D.Myosin
Correct Answer: Tubulin
Explanation:
Microtubules are hollow tubes built from dimers of α- and β-tubulin proteins.
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10The plant cell wall is mainly composed of:
Cell wall
Easy
A.Cellulose
B.Keratin
C.Peptidoglycan
D.Chitin
Correct Answer: Cellulose
Explanation:
Plant cell walls are primarily made of cellulose, a polysaccharide of glucose units, providing structural support.
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11Which organelle is considered the control center of the cell?
nucleus
Easy
A.Lysosome
B.Mitochondrion
C.Golgi apparatus
D.Nucleus
Correct Answer: Nucleus
Explanation:
The nucleus houses the cell's DNA and directs cellular activities such as growth, metabolism, and reproduction.
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12The mitochondrion is best described as the:
mitochondria
Easy
A.Storage center of the cell
B.Packaging center of the cell
C.Digestive center of the cell
D.Powerhouse of the cell
Correct Answer: Powerhouse of the cell
Explanation:
Mitochondria generate most of the cell's ATP through aerobic respiration, earning the nickname 'powerhouse of the cell.'
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13The main function of the Golgi apparatus is to:
Golgi bodies
Easy
A.Store genetic material
B.Synthesize ATP
C.Modify, sort, and package proteins
D.Break down worn-out organelles
Correct Answer: Modify, sort, and package proteins
Explanation:
The Golgi apparatus modifies, sorts, and packages proteins and lipids for secretion or delivery to other parts of the cell.
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14Lysosomes are often referred to as the cell's:
lysosomes
Easy
A.Protein builders
B.Genetic library
C.Energy factories
D.Digestive bags
Correct Answer: Digestive bags
Explanation:
Lysosomes contain hydrolytic enzymes that digest macromolecules, worn-out organelles, and foreign particles, hence the name 'digestive bags.'
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15Which type of endoplasmic reticulum has ribosomes attached to its surface?
endoplasmic reticulum
Easy
A.Transitional reticulum
B.Smooth endoplasmic reticulum
C.Nuclear reticulum
D.Rough endoplasmic reticulum
Correct Answer: Rough endoplasmic reticulum
Explanation:
The rough ER is studded with ribosomes, giving it a rough appearance, and is involved in protein synthesis.
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16Peroxisomes are involved in the breakdown of which harmful compound?
peroxisomes
Easy
A.Carbon dioxide
B.Glucose
C.Hydrogen peroxide
D.Lactic acid
Correct Answer: Hydrogen peroxide
Explanation:
Peroxisomes contain the enzyme catalase, which breaks down toxic hydrogen peroxide () into water and oxygen.
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17Which of the following is a type of plastid that stores starch?
plastids
Easy
A.Chromoplast
B.Mitochondrion
C.Leucoplast
D.Chloroplast
Correct Answer: Leucoplast
Explanation:
Leucoplasts are colorless plastids specialized for storage of starch, oils, or proteins in plant cells.
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18The large central vacuole in a mature plant cell mainly functions to:
vacuoles
Easy
A.Synthesize proteins
B.Replicate DNA
C.Produce ATP
D.Maintain turgor pressure
Correct Answer: Maintain turgor pressure
Explanation:
The central vacuole stores water and solutes, maintaining turgor pressure that keeps the plant cell firm and supports the plant.
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19The green pigment found in chloroplasts that captures light energy is:
chloroplast
Easy
A.Hemoglobin
B.Carotene
C.Melanin
D.Chlorophyll
Correct Answer: Chlorophyll
Explanation:
Chlorophyll is the green pigment in chloroplasts that absorbs light energy for photosynthesis.
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20Which cytoskeletal structures form the core of cilia and flagella involved in cell movement?
Structure & function of cytoskeleton and its role in motility
Easy
A.Microtubules
B.Cellulose fibers
C.Microfilaments
D.Intermediate filaments
Correct Answer: Microtubules
Explanation:
Cilia and flagella contain a core of microtubules arranged in a characteristic 9+2 pattern, enabling their movement.
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21All living cells, regardless of their type, share a common set of features. Which combination represents features found universally in every cell?
Universal features of cells
Medium
A.Cell wall, chloroplast, ribosomes, and cytoplasm
B.Plasma membrane, DNA as genetic material, ribosomes, and cytoplasm
C.Endoplasmic reticulum, DNA, plasma membrane, and Golgi apparatus
D.Nucleus, mitochondria, plasma membrane, and DNA
Correct Answer: Plasma membrane, DNA as genetic material, ribosomes, and cytoplasm
Explanation:
Every cell — prokaryotic or eukaryotic — is bounded by a plasma membrane, stores information in DNA, synthesizes proteins on ribosomes, and contains cytoplasm. Membrane-bound organelles like nuclei and mitochondria are exclusive to eukaryotes.
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22A researcher analyzes the dry weight of a bacterial cell and finds that one class of macromolecule accounts for the largest fraction. Which macromolecule is this most likely to be?
cell chemistry and biosynthesis - chemical organization of cells
Medium
A.Lipids
B.Proteins
C.Nucleic acids
D.Polysaccharides
Correct Answer: Proteins
Explanation:
Proteins make up the largest fraction of a cell's dry mass (typically ~50%), reflecting their diverse structural and catalytic roles. Nucleic acids, lipids, and polysaccharides each contribute smaller proportions.
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23During condensation (dehydration) reactions in biosynthesis, monomers are joined into polymers. What is released with each bond formed?
cell chemistry and biosynthesis - chemical organization of cells
Medium
A.A water molecule
B.A carbon dioxide molecule
C.An ATP molecule
D.A phosphate ion
Correct Answer: A water molecule
Explanation:
Condensation reactions link monomers by removing the equivalent of a water molecule for each covalent bond formed. Hydrolysis reverses this by adding water to break the bond.
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24The fluid mosaic model describes the plasma membrane. Which experimental observation best supports the 'fluid' aspect of this model?
Internal organization of the cell - cell membranes: structure of cell membranes and concepts related to compartmentalization in eukaryotic cells
Medium
A.Membrane proteins from fused cells intermix laterally over time
B.Glycoproteins are found only on the cytosolic surface
C.Phospholipids are arranged in a rigid crystalline lattice
D.Cholesterol permanently locks lipids in fixed positions
Correct Answer: Membrane proteins from fused cells intermix laterally over time
Explanation:
The Frye–Edidin cell-fusion experiment showed that labeled membrane proteins from two different cells intermixed after fusion, demonstrating lateral mobility and the fluid nature of the bilayer.
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25Compartmentalization in eukaryotic cells provides a functional advantage. Which statement best explains this advantage?
Internal organization of the cell - cell membranes: structure of cell membranes and concepts related to compartmentalization in eukaryotic cells
Medium
A.It prevents the cell from maintaining concentration gradients
B.It eliminates the need for transport proteins between organelles
C.It reduces the total surface area available for reactions
D.It allows incompatible biochemical processes to occur simultaneously in separate spaces
Correct Answer: It allows incompatible biochemical processes to occur simultaneously in separate spaces
Explanation:
Membrane-bound compartments segregate reactions with conflicting conditions (e.g., degradation in lysosomes vs. synthesis in the ER), enabling specialized microenvironments and increased efficiency.
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26Three cytoskeletal filament types differ in diameter. Arranged from smallest to largest diameter, the correct order is:
Microfilaments (actin) are ~7 nm, intermediate filaments ~10 nm, and microtubules ~25 nm in diameter, giving the order microfilaments < intermediate filaments < microtubules.
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27Microtubules exhibit structural polarity with a fast-growing plus end and a slow-growing minus end. This polarity arises because:
Structure and organization of cytoskeleton
Medium
A.Both ends are chemically identical but grow at different rates randomly
B.Intermediate filament subunits stabilize the plus end
C.Tubulin dimers add in a fixed orientation along the filament
D.Actin monomers cap the minus end permanently
Correct Answer: Tubulin dimers add in a fixed orientation along the filament
Explanation:
α/β-tubulin dimers assemble head-to-tail in a consistent orientation, so the two ends expose different tubulin faces. This intrinsic polarity underlies directional growth and motor protein transport.
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28A plant cell and a fungal cell both possess cell walls, but their structural polysaccharides differ. Which pairing is correct?
Plant cell walls are built primarily from cellulose, while fungal cell walls contain chitin. Peptidoglycan is characteristic of bacterial cell walls, not plants or fungi.
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29The nuclear envelope is perforated by nuclear pore complexes. What is the primary functional role of these pores?
nucleus
Medium
A.Selective bidirectional transport of molecules between nucleus and cytoplasm
B.Production of ATP for nuclear processes
C.Synthesis of ribosomal RNA within the nucleolus
D.Anchoring chromatin to the inner nuclear membrane
Correct Answer: Selective bidirectional transport of molecules between nucleus and cytoplasm
Explanation:
Nuclear pore complexes regulate the selective, bidirectional passage of ions, proteins, and RNA between the nucleoplasm and cytoplasm, allowing small molecules to diffuse freely while large cargo requires signal-mediated transport.
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30The inner mitochondrial membrane is highly folded into cristae. What is the functional significance of this folding?
mitochondria
Medium
A.It stores the mitochondrial genome in a protected space
B.It increases surface area for the electron transport chain and ATP synthesis
C.It reduces the volume of the intermembrane space to zero
D.It allows free diffusion of large proteins into the matrix
Correct Answer: It increases surface area for the electron transport chain and ATP synthesis
Explanation:
Cristae greatly expand the inner membrane surface area, providing more room for electron transport chain complexes and ATP synthase, thereby maximizing oxidative phosphorylation capacity.
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31A secretory protein moves through the Golgi apparatus. In which direction does it travel through the cisternae?
Golgi bodies
Medium
A.It remains stationary while enzymes move around it
B.From the trans face to the cis face
C.From the medial cisternae outward to both faces equally
D.From the cis face (near ER) to the trans face (near plasma membrane)
Correct Answer: From the cis face (near ER) to the trans face (near plasma membrane)
Explanation:
Proteins enter the Golgi at the cis face facing the ER, undergo sequential modification through the medial cisternae, and exit at the trans face for sorting toward their final destinations.
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32Lysosomal hydrolytic enzymes function optimally at acidic pH (~4.5–5.0). What is the protective advantage of this pH requirement for the cell?
lysosomes
Medium
A.It prevents any enzymes from ever leaking into the cytosol
B.It allows enzymes to digest the lysosomal membrane itself
C.Leaked enzymes are largely inactive at the neutral pH of the cytosol
D.It enables the enzymes to function only in extracellular fluid
Correct Answer: Leaked enzymes are largely inactive at the neutral pH of the cytosol
Explanation:
Because hydrolases require acidic conditions, any that leak into the neutral (~pH 7.2) cytosol lose most activity, providing a built-in safeguard against accidental self-digestion.
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33A cell specialized in steroid hormone synthesis is examined. Which feature would you expect to be most abundant?
endoplasmic reticulum
Medium
A.Rough endoplasmic reticulum
B.Peroxisomes
C.Smooth endoplasmic reticulum
D.Free ribosomes in the cytosol
Correct Answer: Smooth endoplasmic reticulum
Explanation:
The smooth ER is the primary site of lipid and steroid synthesis. Cells producing steroid hormones (e.g., in gonads or adrenal cortex) contain extensive smooth ER.
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34Peroxisomes contain the enzyme catalase. What is the primary role of catalase in these organelles?
peroxisomes
Medium
A.Digesting worn-out organelles by autophagy
B.Decomposing hydrogen peroxide into water and oxygen
C.Synthesizing hydrogen peroxide from oxygen
D.Producing ATP through oxidative phosphorylation
Correct Answer: Decomposing hydrogen peroxide into water and oxygen
Explanation:
Oxidase reactions in peroxisomes generate toxic ; catalase then converts it into harmless water and oxygen (), protecting the cell from oxidative damage.
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35Plastids can interconvert depending on cellular needs. A green chloroplast in a potato tuber exposed to darkness may convert into which plastid type used for starch storage?
plastids
Medium
A.Chromoplast
B.Elaioplast
C.Amyloplast
D.Etioplast
Correct Answer: Amyloplast
Explanation:
Amyloplasts are colorless plastids specialized for starch storage, common in tubers like potatoes. Chromoplasts store pigments, while etioplasts form in dark-grown seedlings lacking chlorophyll.
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36The large central vacuole of a mature plant cell contributes to turgor pressure. What happens to the cell when this vacuole loses water in a hypertonic environment?
vacuoles
Medium
A.Turgor pressure increases and the cell becomes rigid
B.The cell undergoes plasmolysis as the protoplast shrinks from the wall
C.The cell bursts due to excessive water uptake
D.The cell wall expands to accommodate more water
Correct Answer: The cell undergoes plasmolysis as the protoplast shrinks from the wall
Explanation:
In a hypertonic solution, water leaves the vacuole, the protoplast shrinks and pulls away from the cell wall (plasmolysis), and turgor pressure drops, causing wilting.
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37The light-dependent reactions of photosynthesis occur in a specific chloroplast compartment. Where do these reactions take place?
chloroplast
Medium
A.Outer chloroplast membrane
B.Stroma
C.Thylakoid membranes
D.Intermembrane space
Correct Answer: Thylakoid membranes
Explanation:
Light-dependent reactions occur in the thylakoid membranes, which house photosystems and the electron transport chain. The stroma is where the light-independent (Calvin cycle) reactions take place.
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38The 'sliding filament' mechanism of muscle contraction depends on an interaction between two cytoskeletal-related proteins. Which motor protein 'walks' along actin filaments to generate force?
Structure & function of cytoskeleton and its role in motility
Medium
A.Kinesin
B.Tubulin
C.Dynein
D.Myosin
Correct Answer: Myosin
Explanation:
Myosin is the actin-based motor protein that hydrolyzes ATP to move along actin filaments, driving muscle contraction. Kinesin and dynein are microtubule-based motors, and tubulin is a structural subunit.
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39Cilia and flagella beat using a characteristic internal arrangement of microtubules. What is this arrangement called?
Structure & function of cytoskeleton and its role in motility
Medium
A.6 + 2 arrangement of actin filaments
B.9 + 2 axoneme with dynein arms
C.9 + 0 arrangement without a central pair
D.12 + 0 arrangement of intermediate filaments
Correct Answer: 9 + 2 axoneme with dynein arms
Explanation:
Motile cilia and flagella contain an axoneme of nine peripheral microtubule doublets surrounding two central singlets (9 + 2), with dynein arms that generate the bending motion by ATP-driven sliding.
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40Cholesterol is an important component of animal cell membranes. How does it affect membrane fluidity at high temperatures?
Internal organization of the cell - cell membranes: structure of cell membranes and concepts related to compartmentalization in eukaryotic cells
Medium
A.It reduces fluidity by restraining phospholipid movement
B.It converts phospholipids into glycolipids
C.It has no effect on fluidity at any temperature
D.It increases fluidity by spreading phospholipids apart
Correct Answer: It reduces fluidity by restraining phospholipid movement
Explanation:
At high temperatures cholesterol acts as a fluidity buffer, restraining phospholipid movement and reducing excessive fluidity. At low temperatures it prevents tight packing, maintaining membrane stability across a range of conditions.
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41A researcher performs a FRAP (Fluorescence Recovery After Photobleaching) experiment on a plasma membrane protein and observes that only 60% of the fluorescence recovers after bleaching, with a slow recovery half-time. Which interpretation is most consistent with these data?
Internal organization of the cell - cell membranes: structure of cell membranes and concepts related to compartmentalization in eukaryotic cells
Hard
A.The entire protein population diffuses freely with a high diffusion coefficient
B.The lipid bilayer has undergone a complete gel-to-fluid phase transition
C.The protein is exclusively localized to lipid rafts that permit unrestricted lateral diffusion
D.A mobile fraction of 60% exists, with the immobile 40% likely tethered to the cytoskeleton or confined by membrane domains
Correct Answer: A mobile fraction of 60% exists, with the immobile 40% likely tethered to the cytoskeleton or confined by membrane domains
Explanation:
Incomplete fluorescence recovery indicates an immobile fraction. Recovery of 60% means 40% of proteins are immobilized, commonly due to cytoskeletal anchoring or confinement within membrane microdomains, while the slow half-time reflects restricted lateral diffusion.
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42In the chemiosmotic model, an uncoupler like 2,4-dinitrophenol (DNP) is added to actively respiring mitochondria. What is the predicted effect on oxygen consumption and ATP synthesis?
mitochondria
Hard
A.Oxygen consumption increases while ATP synthesis decreases
B.Both oxygen consumption and ATP synthesis increase
C.Both oxygen consumption and ATP synthesis decrease
D.Oxygen consumption decreases while ATP synthesis increases
Correct Answer: Oxygen consumption increases while ATP synthesis decreases
Explanation:
Uncouplers dissipate the proton gradient by transporting across the inner membrane, bypassing ATP synthase. Electron transport (and consumption) accelerates to restore the gradient, but the energy is released as heat rather than driving ATP synthesis.
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43Treadmilling of an actin filament occurs when subunits add to the plus (barbed) end and dissociate from the minus (pointed) end at equal rates. This steady state requires that the free G-actin concentration equals which value?
Structure & function of cytoskeleton and its role in motility
Hard
A.Zero, since net growth must cease entirely
B.The critical concentration of the minus end only
C.A concentration intermediate between the critical concentrations of the two ends
D.The critical concentration of the plus end only
Correct Answer: A concentration intermediate between the critical concentrations of the two ends
Explanation:
Because ATP hydrolysis makes the plus end's critical concentration lower than the minus end's, there is a range of monomer concentration where the plus end grows while the minus end shrinks. Treadmilling occurs at the steady-state concentration between and .
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44A secretory protein is synthesized but fails to be N-glycosylated in the ER lumen. Assuming the signal sequence is intact, which is the most likely direct cause?
endoplasmic reticulum
Hard
A.The sequon -- is absent or is proline, preventing oligosaccharyltransferase recognition
B.The signal recognition particle failed to bind the ribosome
C.The protein was translated on free ribosomes in the cytosol
Correct Answer: The sequon -- is absent or is proline, preventing oligosaccharyltransferase recognition
Explanation:
N-linked glycosylation requires the consensus sequon -- where is any residue except proline. Absence of a valid sequon prevents oligosaccharyltransferase from transferring the precursor oligosaccharide, even when ER targeting is normal.
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45In I-cell disease (mucolipidosis II), lysosomal enzymes are secreted extracellularly rather than delivered to lysosomes. The underlying defect is a deficiency in which enzyme?
lysosomes
Hard
A.Vacuolar -ATPase that acidifies the lysosome
B.Acid hydrolase active in the lysosomal lumen
C.Mannose-6-phosphate receptor in the trans-Golgi network
D.GlcNAc phosphotransferase, which generates the mannose-6-phosphate tag
Correct Answer: GlcNAc phosphotransferase, which generates the mannose-6-phosphate tag
Explanation:
I-cell disease results from a defective GlcNAc phosphotransferase, so lysosomal enzymes cannot acquire the mannose-6-phosphate marker. Lacking the M6P tag, they are not recognized by M6P receptors and are secreted by default rather than sorted to lysosomes.
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46During the light reactions, cyclic electron flow around Photosystem I differs from linear (non-cyclic) flow in that cyclic flow produces:
chloroplast
Hard
A.Oxygen and NADPH but no ATP
B.Both ATP and NADPH in equal amounts
C.ATP only, without generating NADPH or evolving oxygen
D.NADPH only, without ATP
Correct Answer: ATP only, without generating NADPH or evolving oxygen
Explanation:
Cyclic electron flow routes electrons from PSI back to the cytochrome complex, pumping protons to drive ATP synthesis. It does not reduce or split water, so no NADPH is made and no is evolved—useful when the cell needs extra ATP relative to NADPH.
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47Peroxisomal matrix proteins are imported post-translationally in a folded state, which distinguishes their import from that into the ER and mitochondria. This is enabled primarily by:
peroxisomes
Hard
A.A cleavable N-terminal signal and translocation through the Sec61 channel
B.Vesicular budding from the smooth ER carrying enzymes inward
C.The PTS1/PTS2 signals recognized by cytosolic receptors (Pex5/Pex7) that shuttle folded cargo across the membrane
D.The TOM/TIM complexes that unfold proteins before import
Correct Answer: The PTS1/PTS2 signals recognized by cytosolic receptors (Pex5/Pex7) that shuttle folded cargo across the membrane
Explanation:
Peroxisomes import fully folded (even oligomeric) proteins bearing PTS1 (C-terminal SKL) or PTS2 signals. Cytosolic receptors Pex5/Pex7 bind cargo, dock at the membrane, and the transient pore permits translocation without unfolding—unlike the narrow channels of the ER or mitochondria.
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48Nuclear import of a large cargo bearing a classical NLS requires directionality provided by the RanGTP gradient. What maintains high RanGTP in the nucleus and low RanGTP in the cytoplasm?
RCC1 (RanGEF) is chromatin-bound, so RanGTP is high in the nucleus; RanGAP resides in the cytoplasm and drives GTP hydrolysis there. This compartmentalized gradient dictates cargo binding/release by importins and exportins, enforcing transport directionality.
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49The cisternal maturation model of Golgi transport is best supported by which observation?
Golgi bodies
Hard
A.Retrograde transport is mediated by COPII vesicles from the ER
B.Cargo moves forward exclusively in anterograde COPI vesicles between stable cisternae
C.Large cargo like procollagen aggregates traverse the Golgi without leaving the cisternal lumen, while resident enzymes are recycled retrogradely by COPI vesicles
D.Golgi enzymes remain fixed while cisternae are permanent structures
Correct Answer: Large cargo like procollagen aggregates traverse the Golgi without leaving the cisternal lumen, while resident enzymes are recycled retrogradely by COPI vesicles
Explanation:
Procollagen aggregates too large to fit in vesicles still progress cis-to-trans, implying the cisternae themselves mature. Resident Golgi enzymes are retrieved backward via COPI vesicles to maintain compartment identity, supporting cisternal maturation over stable-compartment vesicular models.
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50Microtubule dynamic instability is governed by the state of the GTP cap. Which scenario triggers rapid depolymerization (catastrophe)?
Structure and organization of cytoskeleton
Hard
A.Accumulation of GTP-tubulin at the minus end
B.Binding of stabilizing +TIP proteins to the growing end
C.Loss of the GTP-tubulin cap exposing GDP-tubulin, which has a curved conformation unfavorable to the lattice
D.Continued addition of GTP-tubulin faster than hydrolysis
Correct Answer: Loss of the GTP-tubulin cap exposing GDP-tubulin, which has a curved conformation unfavorable to the lattice
Explanation:
GTP-tubulin at the plus end forms a stabilizing cap. When hydrolysis outpaces addition, GDP-tubulin is exposed; its intrinsically curved conformation strains the straight lattice, causing protofilaments to peel and the microtubule to undergo catastrophe (rapid shrinkage).
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51A polymer of amino acids linked by peptide bonds and a polymer of nucleotides both grow by condensation reactions. Which statement correctly compares the directionality of their biosynthesis?
cell chemistry and biosynthesis - chemical organization of cells
Hard
A.Both proteins and nucleic acids are synthesized without defined polarity
B.Proteins are synthesized N-terminus to C-terminus, while nucleic acids are synthesized 5' to 3'
C.Both are synthesized C-terminus to N-terminus and 3' to 5' respectively
D.Proteins grow C-to-N while nucleic acids grow 5' to 3'
Correct Answer: Proteins are synthesized N-terminus to C-terminus, while nucleic acids are synthesized 5' to 3'
Explanation:
Ribosomes add amino acids to the growing C-terminus, so proteins elongate N→C. Polymerases add nucleotides to the free 3'-OH, so nucleic acids elongate 5'→3'. Both directions reflect the chemistry of the activated monomer addition step.
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52The near-universality of the genetic code across bacteria, archaea, and eukaryotes is most parsimoniously explained by which conclusion?
Universal features of cells
Hard
A.The code arose independently multiple times by convergent evolution
B.Horizontal gene transfer standardized the code after divergence
C.The code is chemically the only combination possible for any life form
D.All extant life descended from a common ancestor that already used this code
Correct Answer: All extant life descended from a common ancestor that already used this code
Explanation:
Because the codon assignments are essentially shared across all domains, the simplest explanation is common descent from a last universal common ancestor (LUCA) that already used the code. Independent origin would be extraordinarily unlikely given the arbitrariness of codon-amino acid pairings.
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53Gram-positive and Gram-negative bacteria retain crystal violet differently during Gram staining. The mechanistic basis for Gram-positive retention is:
Cell wall
Hard
A.An outer membrane with lipopolysaccharide that binds crystal violet tightly
B.A thick peptidoglycan layer that traps the crystal violet-iodine complex when alcohol dehydrates it
C.The absence of teichoic acids allowing dye penetration
D.A thin peptidoglycan layer permeable to the decolorizer
Correct Answer: A thick peptidoglycan layer that traps the crystal violet-iodine complex when alcohol dehydrates it
Explanation:
Gram-positive cells have a thick, multilayered peptidoglycan wall. Alcohol dehydrates and shrinks this mesh, trapping the crystal violet-iodine complex. Gram-negative cells have thin peptidoglycan and an outer membrane that the alcohol disrupts, releasing the dye and requiring counterstaining.
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54The large central vacuole in a mature plant cell is essential for turgor. If a plant cell is placed in a hypertonic solution, which sequence best describes the vacuole's role in the resulting change?
vacuoles
Hard
A.The vacuole ruptures and releases hydrolases, lysing the cell
B.The tonoplast actively pumps solutes out to maintain constant volume
C.Water leaves the vacuole, it shrinks, the protoplast pulls from the wall, and plasmolysis occurs
D.Water enters the vacuole, it swells, and the cell becomes turgid
Correct Answer: Water leaves the vacuole, it shrinks, the protoplast pulls from the wall, and plasmolysis occurs
Explanation:
In a hypertonic medium, water exits the vacuole down its osmotic gradient. The vacuole shrinks, turgor is lost, and the protoplast pulls away from the rigid cell wall—plasmolysis. The vacuole thus buffers the cell's water and solute balance.
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55Proplastids can differentiate into distinct plastid types depending on tissue and light. Which pairing of plastid type and primary function is correct?
plastids
Hard
A.Chromoplast — pigment storage in fruits and flowers; Amyloplast — starch storage in roots
Correct Answer: Chromoplast — pigment storage in fruits and flowers; Amyloplast — starch storage in roots
Explanation:
Chromoplasts accumulate carotenoids giving color to fruits/flowers, while amyloplasts store starch (and mediate gravity sensing) in roots and tubers. All derive from proplastids; leucoplasts are the colorless storage class that includes amyloplasts.
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56Membrane lipid asymmetry is actively maintained. Exposure of phosphatidylserine (PS) on the outer leaflet is a physiologically important signal. What enzyme activity typically maintains PS on the inner leaflet, and what disrupts it during apoptosis?
Internal organization of the cell - cell membranes: structure of cell membranes and concepts related to compartmentalization in eukaryotic cells
Hard
A.Floppases maintain inner PS; flippase activation exposes PS during apoptosis
ATP-dependent flippases move PS and PE to the cytosolic (inner) leaflet, maintaining asymmetry. During apoptosis, -activated scramblases (and inactivation of flippases) randomize lipids, exposing PS externally as an 'eat-me' signal for phagocytes.
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57In the sliding filament mechanism of ciliary/flagellar beating, dynein arms attempt to slide adjacent microtubule doublets. Bending (rather than sliding apart) occurs because:
Structure & function of cytoskeleton and its role in motility
Hard
A.ATP hydrolysis is too slow to permit full sliding
B.Nexin links and basal anchoring resist sliding, converting it into localized bending
C.The central pair microtubules physically block sliding
D.Myosin motors crosslink the doublets preventing displacement
Correct Answer: Nexin links and basal anchoring resist sliding, converting it into localized bending
Explanation:
Dynein generates sliding forces between doublets, but nexin (elastic) crosslinks and anchoring at the basal body constrain free sliding. The resistance transforms the sliding force into bending of the axoneme, producing the characteristic ciliary/flagellar waveform.
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58The endosymbiotic theory predicts specific features of mitochondrial molecular biology. Which observation is LEAST consistent with a free-living bacterial ancestor?
mitochondria
Hard
A.Mitochondria possess a circular genome and 70S-type ribosomes
B.Most mitochondrial proteins are encoded by the nuclear genome and imported post-translationally
C.Mitochondrial protein synthesis is inhibited by chloramphenicol
D.The inner membrane resembles a bacterial plasma membrane and contains cardiolipin
Correct Answer: Most mitochondrial proteins are encoded by the nuclear genome and imported post-translationally
Explanation:
Nuclear encoding of most mitochondrial proteins reflects massive gene transfer to the nucleus AFTER endosymbiosis—it is not a feature of the free-living ancestor itself. The other options (circular DNA, 70S ribosomes, cardiolipin, chloramphenicol sensitivity) are direct bacterial legacies.
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59A misfolded protein accumulates in the ER lumen. The unfolded protein response (UPR) is triggered. Which coordinated set of outcomes best represents an adaptive UPR?
endoplasmic reticulum
Hard
A.Upregulation of chaperones, attenuation of general translation, and expansion of ER membrane
B.Immediate apoptosis with no attempt at protein refolding
C.Export of misfolded proteins to the nucleus for degradation
D.Downregulation of chaperones and increased translation to dilute misfolded protein
Correct Answer: Upregulation of chaperones, attenuation of general translation, and expansion of ER membrane
Explanation:
Adaptive UPR increases chaperone (e.g., BiP) expression, reduces global translation to lessen protein load (via PERK-eIF2α), and expands ER capacity. If stress is unresolved, prolonged UPR can switch to apoptosis, but the initial adaptive goal is restoring folding homeostasis.
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60Intermediate filaments differ fundamentally from actin filaments and microtubules in a way that suits their mechanical role. Which distinction is correct?
Structure and organization of cytoskeleton
Hard
A.They serve as tracks for kinesin and dynein movement
B.They are non-polar, assembled from staggered antiparallel tetramers, and lack nucleotide-dependent dynamics
C.They are polar, use GTP hydrolysis, and support directional motor transport
D.They exhibit treadmilling driven by ATP hydrolysis like actin
Correct Answer: They are non-polar, assembled from staggered antiparallel tetramers, and lack nucleotide-dependent dynamics
Explanation:
Intermediate filaments assemble from antiparallel, staggered tetramers, producing non-polar filaments with no distinct plus/minus ends and no nucleotide-driven dynamics. This apolar, rope-like architecture gives them high tensile strength, ideal for bearing mechanical stress rather than directing motor transport.
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