Unit 4: Amino Acids and Proteins - Practice Quiz

BTY105 — Fundamentals Of Biochemistry 60 Questions
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1 What is the common structural feature of most amino acids?

Structure and properties of amino acids Easy
A. An amino group and a carboxyl group attached to a central carbon
B. A phosphate group and a hydroxyl group attached to sulfur
C. A methyl group and a phosphate group attached to nitrogen
D. Two amino groups attached to a terminal carbon

2 What is the variable part of an amino acid called?

Structure and properties of amino acids Easy
A. R group
B. Phosphate group
C. Carbonyl group
D. Peptide group

3 At approximately neutral pH, many amino acids exist mainly as:

Structure and properties of amino acids Easy
A. Neutral molecules
B. Hydrocarbons
C. Nucleotides
D. Zwitterions

4 Which group gives amino acids their acidic property?

Structure and properties of amino acids Easy
A. Methyl group
B. Carboxyl group
C. Amino group
D. Sulfhydryl group

5 Which amino acids must be obtained from the diet because the body cannot make enough of them?

Classification of amino acids Easy
A. Aromatic amino acids
B. Nonpolar amino acids
C. Essential amino acids
D. Acidic amino acids

6 Which type of amino acid has a side chain that does not readily interact with water?

Classification of amino acids Easy
A. Charged amino acid
B. Nonpolar amino acid
C. Acidic amino acid
D. Basic amino acid

7 Which amino acids have side chains that can carry a negative charge at physiological pH?

Classification of amino acids Easy
A. Acidic amino acids
B. Aromatic amino acids
C. Basic amino acids
D. Nonpolar amino acids

8 Which amino acids have side chains that can carry a positive charge at physiological pH?

Classification of amino acids Easy
A. Acidic amino acids
B. Nonpolar amino acids
C. Basic amino acids
D. Neutral amino acids

9 What does a titration curve of an amino acid show?

Titration curves of amino acids Easy
A. Change in color as oxygen is removed
B. Change in volume as protein is digested
C. Change in pH as acid or base is added
D. Change in mass as heat is added

10 What is the isoelectric point of an amino acid?

Titration curves of amino acids Easy
A. The pH at which it is completely neutral in every group
B. The pH at which it has no net charge
C. The temperature at which it unfolds
D. The pH at which it becomes a carbohydrate

11 A buffer solution resists changes in:

Titration curves of amino acids Easy
A. pH
B. Pressure
C. Temperature
D. Protein mass

12 During titration with a strong acid, an amino acid generally:

Titration curves of amino acids Easy
A. Forms a peptide immediately
B. Loses all carbon atoms
C. Changes into a lipid
D. Accepts additional protons

13 Proteins are polymers made from repeating units called:

Structure and functions of proteins Easy
A. Nucleotides
B. Monosaccharides
C. Fatty acids
D. Amino acids

14 What type of bond joins amino acids in a protein chain?

Structure and functions of proteins Easy
A. Peptide bond
B. Ester bond
C. Phosphodiester bond
D. Glycosidic bond

15 Which protein function involves speeding up biochemical reactions?

Structure and functions of proteins Easy
A. Enzymatic catalysis
B. Light absorption
C. Oxygen production
D. Genetic storage

16 Which protein is primarily involved in transporting oxygen in red blood cells?

Structure and functions of proteins Easy
A. Hemoglobin
B. Keratin
C. Insulin
D. Collagen

17 What does the primary structure of a protein describe?

Different level of structural organization of proteins Easy
A. The amino acid sequence
B. The location of the protein in a cell
C. The number of protein subunits
D. The arrangement of lipid molecules

18 Which structures are common examples of secondary protein structure?

Different level of structural organization of proteins Easy
A. Sugar rings and lipid bilayers
B. DNA strands and RNA loops
C. Phosphate chains and methyl groups
D. Alpha helices and beta sheets

19 What does the tertiary structure of a protein describe?

Different level of structural organization of proteins Easy
A. The breakdown of glucose in a cell
B. The number of amino acids in a food
C. The order of bases in a nucleic acid
D. The overall three-dimensional shape of one polypeptide

20 Quaternary structure is present when a protein:

Different level of structural organization of proteins Easy
A. Is made entirely of carbohydrates
B. Contains multiple polypeptide subunits
C. Has no peptide bonds
D. Contains only one amino acid

21 At physiological pH, the amino group of a typical amino acid is mainly present as which form?

Structure and properties of amino acids Medium
A. because the solution is nearly neutral
B. because the amino group shares a proton
C. because the amino group loses two protons
D. because the amino group accepts a proton

22 Which feature allows most amino acids, except glycine, to exist as optical isomers?

Structure and properties of amino acids Medium
A. A carboxyl group capable of losing a proton
B. An alpha carbon attached to four different groups
C. A carbonyl carbon attached to two oxygen atoms
D. An amino nitrogen attached to two hydrogen atoms

23 Why does alanine generally have a higher melting point than many small nonpolar organic compounds of similar molecular mass?

Structure and properties of amino acids Medium
A. Alanine contains several aromatic rings
B. Alanine forms ionic interactions as a zwitterion
C. Alanine remains completely uncharged in solids
D. Alanine has no hydrogen-bonding groups

24 Which amino acid would most likely be found on the surface of a globular protein exposed to water?

Structure and properties of amino acids Medium
A. Valine with a branched hydrocarbon side chain
B. Phenylalanine with a hydrophobic aromatic side chain
C. Leucine with a nonpolar hydrocarbon side chain
D. Aspartate with an ionizable carboxylate side chain

25 Which amino acid is classified as conditionally essential because its requirement can increase during rapid growth or illness?

Classification of amino acids Medium
A. Arginine
B. Aspartate
C. Glutamate
D. Alanine

26 A mutation replaces a surface serine residue with leucine. What is the most likely effect on local protein solubility?

Classification of amino acids Medium
A. Solubility remains unchanged because both residues are charged
B. Solubility increases because leucine forms stronger salt bridges
C. Solubility must increase because leucine is larger
D. Solubility may decrease because a polar residue becomes hydrophobic

27 Which pair contains only amino acids with acidic side chains at physiological pH?

Classification of amino acids Medium
A. Serine and threonine
B. Leucine and isoleucine
C. Aspartate and glutamate
D. Lysine and arginine

28 Why is proline often considered structurally distinct from other standard amino acids?

Classification of amino acids Medium
A. Its side chain forms a ring with the amino nitrogen
B. Its side chain contains an additional phosphate group
C. Its amino group is permanently negatively charged
D. Its alpha carbon lacks a carboxyl group

29 During titration of glycine, at the isoelectric point, the predominant species has which overall charge?

Titration curves of amino acids Medium
A. A strongly negative charge
B. A strongly positive charge
C. Approximately zero net charge
D. A rapidly alternating charge

30 For an amino acid without an ionizable side chain, which expression is used to estimate its isoelectric point?

Titration curves of amino acids Medium
A.
B.
C.
D.

31 A buffer is most effective when the pH is close to the relevant because at that point:

Titration curves of amino acids Medium
A. Only the protonated form is present
B. Both forms are present in comparable amounts
C. The amino acid cannot accept any proton
D. Only the deprotonated form is present

32 An amino acid has an ionizable acidic side chain. Which pair of values is generally averaged to estimate its isoelectric point?

Titration curves of amino acids Medium
A. The side-chain and the number of peptide bonds
B. The two highest values regardless of charge
C. The alpha-amino and the molecular mass
D. The two lowest values surrounding the neutral species

33 Why can a single amino acid substitution substantially affect protein function?

Structure and functions of proteins Medium
A. It can alter interactions that stabilize shape or bind ligands
B. It always changes the protein's molecular mass by half
C. It automatically converts the protein into a carbohydrate
D. It prevents formation of every peptide bond

34 An enzyme loses activity after its active-site conformation is disrupted, although its peptide bonds remain intact. Which explanation is most appropriate?

Structure and functions of proteins Medium
A. Peptide bonds function only after complete hydrolysis
B. The enzyme must have changed into a nucleic acid
C. The protein's three-dimensional structure positions key residues
D. Catalytic function depends only on the amino acid sequence

35 A protein contains two polypeptide chains associated through noncovalent interactions. This feature belongs primarily to which structural level?

Different level of structural organization of proteins Medium
A. Tertiary structure
B. Quaternary structure
C. Secondary structure
D. Primary structure

36 Which interaction most directly stabilizes an alpha helix within a single polypeptide chain?

Different level of structural organization of proteins Medium
A. Peptide bonds between separate side chains
B. Hydrogen bonds between backbone groups
C. Disulfide bonds between all neighboring residues
D. Ionic bonds between every pair of backbone atoms

37 Breaking all disulfide bonds in a protein would most directly disrupt which structural feature?

Different level of structural organization of proteins Medium
A. The covalent peptide backbone
B. The genetic code used for translation
C. A covalent link between cysteine side chains
D. The amino acid sequence

38 A protein unfolds when exposed to high concentrations of urea but regains activity after urea removal. What does this observation suggest?

Denaturation and renaturation of proteins Medium
A. Its peptide bonds were permanently hydrolyzed
B. Its function depends only on the denatured state
C. Its sequence contains information needed for folding
D. Its amino acids were converted into nucleotides

39 Which treatment is most likely to denature a protein by disrupting ionic interactions and hydrogen bonding without necessarily breaking peptide bonds?

Denaturation and renaturation of proteins Medium
A. Addition of a compatible amino acid
B. Storage in neutral buffer
C. Removal of dissolved oxygen alone
D. Exposure to extreme pH

40 Why can heating cause an irreversible loss of protein activity even when the peptide chain is not hydrolyzed?

Denaturation and renaturation of proteins Medium
A. Heat removes every amino group from the chain
B. Heat guarantees correct refolding of every chain
C. Heat changes all peptide bonds into ester bonds
D. Heat can promote aggregation of unfolded chains

41 An amino acid has a nonionizable side chain and pKa values of 2.3 for its carboxyl group and 9.6 for its amino group. At pH 6.0, which ionic form predominates and what is its net charge?

Structure and properties of amino acids Hard
A. H2N-CHR-COOH; net charge 0
B. H3N+-CHR-COO−; net charge 0
C. H2N-CHR-COO−; net charge −1
D. H3N+-CHR-COOH; net charge +1

42 Why does substitution of glycine for alanine often have a greater structural effect in an α-helix than the reverse substitution?

Structure and properties of amino acids Hard
A. Glycine forms stronger hydrogen bonds than alanine
B. Glycine is strongly negatively charged at neutral pH
C. Glycine has restricted rotation around its α-carbon
D. Glycine has greater conformational flexibility than alanine

43 A peptide contains an amino acid whose side-chain carboxyl group has a pKa of 4.1. At pH 7.4, which change is most likely if this residue is replaced by lysine?

Structure and properties of amino acids Hard
A. The peptide bond becomes hydrolyzed
B. The local charge becomes more positive
C. The local charge becomes more negative
D. The side chain loses all ionization

44 Which classification best explains why replacing leucine with valine is often less disruptive to a protein core than replacing leucine with aspartate?

Classification of amino acids Hard
A. Leucine and valine are aromatic, whereas aspartate is aliphatic
B. Leucine and valine are basic, whereas aspartate is acidic
C. Leucine and valine are hydrophobic, whereas aspartate is charged
D. Leucine and valine are polar, whereas aspartate is nonpolar

45 Which amino acid is classified as conditionally essential because its synthesis may become insufficient during rapid growth or illness, despite being synthesized in healthy adults?

Classification of amino acids Hard
A. Methionine
B. Leucine
C. Arginine
D. Tryptophan

46 A mutation replaces cysteine with serine in a secreted protein containing several disulfide bonds. Which consequence is most directly expected?

Classification of amino acids Hard
A. Conversion of the residue into an aromatic group
B. Formation of an additional peptide bond
C. Permanent protonation of the peptide backbone
D. Loss of one potential disulfide linkage

47 An amino acid has pKa values of 2.2, 9.7, and 4.0 for its α-carboxyl, α-amino, and side-chain carboxyl groups, respectively. What is its approximate isoelectric point?

Titration curves of amino acids Hard
A.
B.
C.
D.

48 For histidine, the pKa values of the α-carboxyl, imidazolium side chain, and α-amino groups are approximately 1.8, 6.0, and 9.2. Which species predominates near pH 7.6?

Titration curves of amino acids Hard
A. Fully deprotonated species with net charge −2
B. Fully protonated species with net charge +2
C. Species with protonated amino groups and neutral imidazole, net charge +1
D. Zwitterion with a deprotonated amino group, net charge 0

49 For histidine, the pKa values of the α-carboxyl, imidazolium side chain, and α-amino groups are approximately 1.8, 6.0, and 9.2. Which species predominates near pH 7.6?

Titration curves of amino acids Hard
A. Species with protonated amino groups and neutral imidazole, net charge 0
B. Fully protonated species with net charge +2
C. Species with neutral amino groups and protonated imidazole, net charge +1
D. Fully deprotonated species with net charge −2

50 At the pH equal to the pKa of an amino acid's α-amino group, what fraction of that group is protonated under ideal Henderson–Hasselbalch conditions?

Titration curves of amino acids Hard
A. Approximately 25%
B. Approximately 90%
C. Approximately 50%
D. Approximately 10%

51 An amino acid has pKa values of 2.0 and 10.0 and no ionizable side chain. At pH 6.0, which statement about its buffering capacity is most accurate?

Titration curves of amino acids Hard
A. It is greater than at pH 2.0 because all groups are ionized
B. It is maximal because the isoelectric point always equals a pKa
C. It is near a maximum because pH is midway between both pKa values
D. It is negligible because the molecule is electrically neutral

52 A protein binds oxygen cooperatively, and ligand binding at one subunit increases the affinity of the remaining subunits. Which molecular feature most directly accounts for this behavior?

Structure and functions of proteins Hard
A. Independent folding of peptide bonds
B. Communication between subunits through quaternary structure
C. Conversion of α-helices into free amino acids
D. Hydrolysis of all disulfide bonds during binding

53 An enzyme loses catalytic activity after a mutation replaces a conserved histidine near its active site with alanine, although the protein remains soluble. Which conclusion is most justified?

Structure and functions of proteins Hard
A. The mutation may remove an essential acid–base catalytic group
B. Alanine necessarily forms a stronger metal complex
C. The primary structure is unaffected
D. The protein must have undergone complete hydrolysis

54 Why can a single amino acid substitution cause severe disease even when it changes only one residue in a protein?

Structure and functions of proteins Hard
A. A local change can alter folding, interactions, or active-site geometry
B. A substitution always changes the protein's genetic code afterward
C. Every substitution necessarily breaks the peptide backbone
D. All amino acids have identical effects on protein structure

55 Which interaction is classified as a primary-structure feature rather than a secondary-, tertiary-, or quaternary-structure feature?

Different level of structural organization of proteins Hard
A. Covalent order of amino acids in the polypeptide chain
B. Hydrophobic clustering of side chains
C. Hydrogen bonding between backbone carbonyls
D. Association of two folded polypeptide subunits

56 A peptide bond is planar primarily because of which property?

Different level of structural organization of proteins Hard
A. Free rotation around the peptide C–N bond
B. Resonance giving the C–N bond partial double-bond character
C. Hydrolysis of the amide nitrogen
D. Electrostatic repulsion between all backbone atoms

57 A protein contains α-helices stabilized by backbone hydrogen bonds, but its three-dimensional shape is disrupted when buried hydrophobic residues are exposed to solvent. Which structural levels are being distinguished?

Different level of structural organization of proteins Hard
A. Secondary and tertiary
B. Quaternary and primary
C. Primary and secondary
D. Tertiary and quaternary

58 A protein unfolds in 8 M urea but regains activity after urea removal if its reducing environment is carefully controlled. What does this demonstrate?

Denaturation and renaturation of proteins Hard
A. Only quaternary structure determines enzyme activity
B. Disulfide bonds are irrelevant to protein folding
C. Urea permanently hydrolyzes every peptide bond
D. The amino acid sequence can encode native folding information

59 A protein remains unfolded after removal of a denaturant because incorrect disulfide bonds form during refolding. Which treatment would most directly improve renaturation?

Denaturation and renaturation of proteins Hard
A. Hydrolyze the protein into free amino acids
B. Increase the concentration of detergent indefinitely
C. Add a suitable oxidizing–reducing buffer system
D. Replace all cysteine residues with glycine

60 A protein loses enzymatic activity after heating but retains its peptide bonds. Which interpretation is most appropriate?

Denaturation and renaturation of proteins Hard
A. Its peptide sequence has been converted into nucleic acid
B. Its primary structure is necessarily destroyed
C. Its amino acids have all become D-isomers
D. Its higher-order structure may be disrupted by denaturation