Adenine and guanine are purine bases with two fused rings.
Incorrect! Try again.
2Which of the following is a pyrimidine base?
Purines and pyrimidines
Easy
A.Guanine
B.Cytosine
C.Adenine
D.Hypoxanthine
Correct Answer: Cytosine
Explanation:
Cytosine is a pyrimidine base with a single-ring structure.
Incorrect! Try again.
3How many rings are present in a purine base?
Purines and pyrimidines
Easy
A.Two fused rings
B.One ring
C.Four rings
D.Three rings
Correct Answer: Two fused rings
Explanation:
Purines have two fused rings, while pyrimidines have one ring.
Incorrect! Try again.
4Which pyrimidine base is found in RNA but not normally in DNA?
Purines and pyrimidines
Easy
A.Cytosine
B.Uracil
C.Thymine
D.Guanine
Correct Answer: Uracil
Explanation:
Uracil is the pyrimidine base used in RNA in place of thymine.
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5A nucleoside consists of a nitrogenous base attached to which molecule?
Nucleosides and nucleotides
Easy
A.A fatty acid
B.A phosphate group
C.A pentose sugar
D.An amino acid
Correct Answer: A pentose sugar
Explanation:
A nucleoside contains a nitrogenous base and a five-carbon sugar.
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6What additional component distinguishes a nucleotide from a nucleoside?
Nucleosides and nucleotides
Easy
A.A peptide bond
B.A fatty acid
C.A second base
D.A phosphate group
Correct Answer: A phosphate group
Explanation:
A nucleotide is a nucleoside with one or more phosphate groups attached.
Incorrect! Try again.
7Which sugar is present in DNA nucleotides?
Nucleosides and nucleotides
Easy
A.Glucose
B.Ribose
C.Fructose
D.Deoxyribose
Correct Answer: Deoxyribose
Explanation:
DNA contains the pentose sugar deoxyribose.
Incorrect! Try again.
8Which sugar is present in RNA nucleotides?
Nucleosides and nucleotides
Easy
A.Galactose
B.Deoxyribose
C.Maltose
D.Ribose
Correct Answer: Ribose
Explanation:
RNA contains ribose, which has a hydroxyl group at the carbon.
Incorrect! Try again.
9What is the main cellular role of ATP?
Biologically important nucleotides
Easy
A.Breaking down proteins
B.Forming cell walls
C.Providing usable energy
D.Storing genetic information
Correct Answer: Providing usable energy
Explanation:
ATP transfers usable energy for many cellular processes.
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10What does ATP stand for?
Biologically important nucleotides
Easy
A.Adenosine diphosphate
B.Adenine tetraphosphate
C.Amino triphosphate
D.Adenosine triphosphate
Correct Answer: Adenosine triphosphate
Explanation:
ATP is short for adenosine triphosphate.
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11Which nucleotide is commonly known as the cellular energy currency?
Biologically important nucleotides
Easy
A.ATP
B.UMP
C.AMP
D.ADP
Correct Answer: ATP
Explanation:
ATP is commonly called the energy currency of the cell.
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12Which nucleotide commonly acts as a second messenger in cells?
Biologically important nucleotides
Easy
A.cAMP
B.GTP
C.dTMP
D.UDP
Correct Answer: cAMP
Explanation:
Cyclic AMP, or cAMP, functions as an important intracellular second messenger.
Incorrect! Try again.
13What is the usual shape of a DNA molecule?
Structure of DNA
Easy
A.Double helix
B.Triple helix
C.Single straight chain
D.Circular protein
Correct Answer: Double helix
Explanation:
DNA usually consists of two strands twisted into a double helix.
Incorrect! Try again.
14Which base pairs with adenine in DNA?
Structure of DNA
Easy
A.Cytosine
B.Uracil
C.Guanine
D.Thymine
Correct Answer: Thymine
Explanation:
In DNA, adenine forms a complementary base pair with thymine.
Incorrect! Try again.
15Which type of bond joins complementary bases in DNA?
Structure of DNA
Easy
A.Hydrogen bonds
B.Peptide bonds
C.Ester bonds
D.Disulfide bonds
Correct Answer: Hydrogen bonds
Explanation:
Hydrogen bonds hold complementary DNA bases together.
Incorrect! Try again.
16How many strands does most cellular RNA contain?
Structure of RNA
Easy
A.Two strands
B.One strand
C.Three strands
D.Four strands
Correct Answer: One strand
Explanation:
Most cellular RNA molecules are single-stranded.
Incorrect! Try again.
17Which base replaces thymine in RNA?
Structure of RNA
Easy
A.Uracil
B.Guanine
C.Adenine
D.Cytosine
Correct Answer: Uracil
Explanation:
RNA uses uracil instead of thymine.
Incorrect! Try again.
18Which type of RNA carries amino acids to the ribosome?
Structure of RNA
Easy
A.tRNA
B.rRNA
C.mRNA
D.miRNA
Correct Answer: tRNA
Explanation:
Transfer RNA, or tRNA, carries amino acids to the ribosome during protein synthesis.
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19Why are nucleic acids generally negatively charged at physiological pH?
Physical and chemical properties of nucleic acids
Easy
A.They contain lipid chains
B.They contain peptide groups
C.They contain phosphate groups
D.They contain sugar rings
Correct Answer: They contain phosphate groups
Explanation:
Phosphate groups in the nucleic acid backbone carry negative charges.
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20What happens to DNA strands during denaturation?
Physical and chemical properties of nucleic acids
Easy
A.They form peptide bonds
B.They separate from each other
C.They lose all bases
D.They become proteins
Correct Answer: They separate from each other
Explanation:
Denaturation disrupts hydrogen bonds and separates the two DNA strands.
Incorrect! Try again.
21Which structural feature distinguishes purines from pyrimidines?
Purines and pyrimidines
Medium
A.Pyrimidines contain phosphate groups
B.Purines contain two fused rings
C.Pyrimidines contain two fused rings
D.Purines contain a ribose sugar
Correct Answer: Purines contain two fused rings
Explanation:
Purines, including adenine and guanine, have two fused nitrogen-containing rings, whereas pyrimidines have a single ring.
Incorrect! Try again.
22Which base would be expected to pair with cytosine in a normal DNA double helix?
Purines and pyrimidines
Medium
A.Guanine
B.Uracil
C.Adenine
D.Thymine
Correct Answer: Guanine
Explanation:
Cytosine forms three hydrogen bonds with guanine in standard Watson–Crick base pairing.
Incorrect! Try again.
23A mutation replaces a thymine base with uracil in a DNA molecule. Which statement best describes the change?
Purines and pyrimidines
Medium
A.A purine replaces a purine
B.A sugar replaces a pyrimidine
C.A purine replaces a pyrimidine
D.A pyrimidine replaces a pyrimidine
Correct Answer: A pyrimidine replaces a pyrimidine
Explanation:
Both thymine and uracil are single-ring pyrimidines, although thymine contains a methyl group absent from uracil.
Incorrect! Try again.
24Which combination correctly describes a nucleotide?
Nucleosides and nucleotides
Medium
A.Sugar and two bases
B.Sugar and base
C.Sugar, base, and phosphate
D.Base and phosphate
Correct Answer: Sugar, base, and phosphate
Explanation:
A nucleotide consists of a nitrogenous base, a pentose sugar, and one or more phosphate groups.
Incorrect! Try again.
25A molecule contains adenine linked to ribose but no phosphate group. What is it called?
Nucleosides and nucleotides
Medium
A.Adenylate
B.Adenosine
C.Deoxyadenosine monophosphate
D.Adenosine triphosphate
Correct Answer: Adenosine
Explanation:
A nucleoside contains a base and sugar only. Adenine plus ribose forms adenosine.
Incorrect! Try again.
26What type of bond connects the nitrogenous base to the pentose sugar in a nucleoside?
Nucleosides and nucleotides
Medium
A.Phosphodiester bond
B.Disulfide bond
C.N-glycosidic bond
D.Peptide bond
Correct Answer: N-glycosidic bond
Explanation:
The base is attached to the sugar by an N-glycosidic bond, usually involving the sugar's carbon.
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27In a DNA nucleotide, where is the phosphate group commonly attached when the nucleotide is incorporated into a strand?
Nucleosides and nucleotides
Medium
A.The carbon of the sugar
B.The nitrogenous base ring
C.The or carbon of the sugar
D.The carbon of the sugar
Correct Answer: The or carbon of the sugar
Explanation:
Phosphate groups participate in linkages involving the and hydroxyl positions of adjacent sugars.
Incorrect! Try again.
28Why is ATP considered an important cellular nucleotide?
Biologically important nucleotides
Medium
A.It forms peptide bonds directly
B.It stores genetic information
C.It transports oxygen in blood
D.It transfers usable chemical energy
Correct Answer: It transfers usable chemical energy
Explanation:
ATP transfers energy through reactions involving its phosphoanhydride bonds, especially during hydrolysis of terminal phosphate groups.
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29Which nucleotide functions as a major intracellular second messenger in many hormone-signaling pathways?
Biologically important nucleotides
Medium
A.cAMP
B.dTMP
C.GMP
D.UDP
Correct Answer: cAMP
Explanation:
Cyclic AMP, or cAMP, relays signals from activated receptors to intracellular target proteins.
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30NAD is biologically important primarily because it can:
Biologically important nucleotides
Medium
A.Hydrolyze peptide bonds
B.Form the DNA sugar directly
C.Carry electrons during redox reactions
D.Store amino acids
Correct Answer: Carry electrons during redox reactions
Explanation:
NAD accepts reducing equivalents to form NADH and participates in many metabolic oxidation–reduction reactions.
Incorrect! Try again.
31Which nucleotide derivative is most directly involved in activating glucose for glycogen synthesis?
Biologically important nucleotides
Medium
A.FAD
B.cAMP
C.dATP
D.UDP-glucose
Correct Answer: UDP-glucose
Explanation:
UDP-glucose is an activated glucose donor used to add glucose units during glycogen synthesis.
Incorrect! Try again.
32Two DNA strands are described as antiparallel. What does this mean?
Structure of DNA
Medium
A.They have unrelated base sequences
B.They contain different numbers of bases
C.They contain different sugars
D.They run in opposite chemical directions
Correct Answer: They run in opposite chemical directions
Explanation:
One DNA strand runs , while the complementary strand runs .
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33A DNA sample contains adenine. Assuming standard base pairing, what percentage of the sample is guanine?
Structure of DNA
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Adenine equals thymine, so . The remaining is divided equally between guanine and cytosine, giving .
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34Why does a DNA molecule with a higher proportion of G–C base pairs generally require more heat to separate its strands?
Structure of DNA
Medium
A.G–C pairs contain ribose sugars
B.G–C pairs are larger than all other bases
C.G–C pairs have three hydrogen bonds
D.G–C pairs lack charged groups
Correct Answer: G–C pairs have three hydrogen bonds
Explanation:
Guanine–cytosine pairs form three hydrogen bonds, increasing duplex stability compared with A–T pairs, which form two.
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35Which feature of DNA allows one strand to serve as a template for accurate synthesis of the other?
Structure of DNA
Medium
A.Phosphate ionization
B.Sugar ring flexibility
C.Random base arrangement
D.Complementary base pairing
Correct Answer: Complementary base pairing
Explanation:
Specific pairing between A–T and G–C enables the sequence of one strand to determine the sequence of its complement.
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36Which chemical feature makes RNA more susceptible than DNA to alkaline hydrolysis?
Structure of RNA
Medium
A.RNA contains two sugar rings
B.RNA contains a -hydroxyl group
C.RNA contains thymine
D.RNA lacks phosphate groups
Correct Answer: RNA contains a -hydroxyl group
Explanation:
The -OH group in ribose can promote cleavage of the adjacent phosphodiester bond under alkaline conditions.
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37Which base is present in RNA in place of thymine?
Structure of RNA
Medium
A.Cytosine
B.Hypoxanthine
C.Uracil
D.Guanine
Correct Answer: Uracil
Explanation:
RNA normally uses uracil as its pyrimidine partner for adenine instead of thymine.
Incorrect! Try again.
38A single RNA strand folds into a hairpin structure. Which interaction most directly stabilizes this structure?
Structure of RNA
Medium
A.Peptide bonding between riboses
B.Hydrolysis of phosphodiester bonds
C.Complementary intramolecular base pairing
D.Covalent bonding between all bases
Correct Answer: Complementary intramolecular base pairing
Explanation:
Complementary sequences within the same RNA molecule can pair, creating stems, loops, and hairpin structures.
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39Why do nucleic acids migrate toward the positive electrode during electrophoresis?
Physical and chemical properties of nucleic acids
Medium
A.Their phosphate groups carry negative charges
B.Their hydrogen bonds become positive
C.Their sugars release hydroxide ions
D.Their bases are strongly basic
Correct Answer: Their phosphate groups carry negative charges
Explanation:
The phosphodiester backbone gives nucleic acids an overall negative charge, causing movement toward the positive electrode.
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40When double-stranded DNA is heated, its absorbance at approximately increases. What is this effect called?
Physical and chemical properties of nucleic acids
Medium
A.Hyperchromic effect
B.Optical rotation
C.Hypochromic shift
D.Fluorescence quenching
Correct Answer: Hyperchromic effect
Explanation:
DNA strand separation exposes bases and increases absorbance at , producing the hyperchromic effect.
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41Which statement best explains why purine biosynthesis is generally more metabolically expensive than pyrimidine biosynthesis?
Purines and pyrimidines
Hard
A.Purines are assembled atom by atom on ribose phosphate
B.Pyrimidines require PRPP only after ring formation
C.Purines use uracil as their central biosynthetic precursor
D.Purines contain fewer ring atoms than pyrimidines
Correct Answer: Purines are assembled atom by atom on ribose phosphate
Explanation:
The purine ring is constructed sequentially on phosphoribosyl pyrophosphate, whereas the pyrimidine ring is synthesized first and then attached to ribose phosphate.
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42A base-pairing mutation replaces a cytosine with a base that retains one ring but has a carbonyl pattern resembling thymine. Which classification is most appropriate for the replacement base?
Purines and pyrimidines
Hard
A.A nucleoside because it can hydrogen-bond
B.A purine because it contains a carbonyl group
C.A nucleotide because it participates in replication
D.A pyrimidine because it contains one six-membered ring
Correct Answer: A pyrimidine because it contains one six-membered ring
Explanation:
Pyrimidines contain a single six-membered heterocyclic ring. Hydrogen bonding and carbonyl groups do not determine whether a molecule is a base, nucleoside, or nucleotide.
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43Which structural change converts adenosine into AMP without changing the identity of its nitrogenous base?
Nucleosides and nucleotides
Hard
A.Addition of phosphate to the N9 nitrogen
B.Addition of a carbonyl group to the purine ring
C.Addition of phosphate to the 5′-hydroxyl group
D.Replacement of ribose with deoxyribose
Correct Answer: Addition of phosphate to the 5′-hydroxyl group
Explanation:
A nucleoside consists of a base plus sugar. Adding one phosphate, usually at the 5′-hydroxyl of ribose, produces a nucleotide such as AMP.
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44Why is the bond connecting a purine to its sugar described as an N-glycosidic bond rather than an O-glycosidic bond?
Nucleosides and nucleotides
Hard
A.The sugar contributes the anomeric nitrogen
B.The base is linked through a ring nitrogen
C.The sugar is linked through a ring oxygen
D.The phosphate is linked through an oxygen
Correct Answer: The base is linked through a ring nitrogen
Explanation:
Purines attach to the anomeric carbon of the sugar through N9, while pyrimidines attach through N1. The linkage is therefore an N-glycosidic bond.
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45A nucleotide contains 2′-deoxyribose and a uracil base. Which description is chemically correct?
Nucleosides and nucleotides
Hard
A.It is thymine because deoxyribose defines the base
B.It is deoxyuridine because the base remains uracil
C.It is thymidine because all deoxy bases are thymine
D.It is uridine because the sugar is irrelevant
Correct Answer: It is deoxyuridine because the base remains uracil
Explanation:
Nucleoside names depend on both sugar and base. Uracil attached to deoxyribose forms deoxyuridine, not thymidine.
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46Which feature of ATP most directly enables it to act as a phosphoryl-group donor in many biochemical reactions?
Biologically important nucleotides
Hard
A.Its adenine ring absorbs ultraviolet light
B.Its terminal phosphoanhydride bond has high transfer potential
C.Its ribose contains a free 2′-hydroxyl group
D.Its base forms three hydrogen bonds with thymine
Correct Answer: Its terminal phosphoanhydride bond has high transfer potential
Explanation:
ATP transfer reactions are favored because cleavage of a phosphoanhydride bond produces products with greater resonance stabilization, hydration, and electrostatic relief.
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47A cell has abundant ATP but a very low ATP-to-ADP ratio. Which interpretation is most accurate?
Biologically important nucleotides
Hard
A.The cell has limited phosphoryl-transfer capacity
B.The cell cannot synthesize RNA
C.The cell has a high energy charge
D.The cell must contain excess cyclic AMP
Correct Answer: The cell has limited phosphoryl-transfer capacity
Explanation:
A low ATP-to-ADP ratio indicates that much of the adenylate pool is in the lower-energy ADP form, despite ATP being present.
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48Why does cyclic AMP function primarily as a signaling molecule rather than as a direct building block of nucleic acid polymers?
Biologically important nucleotides
Hard
A.Its phosphate bridges the 3′ and 5′ positions of the same ribose
B.Its phosphate is absent from the molecule
C.Its adenine lacks a glycosidic bond to ribose
D.Its sugar is always deoxyribose
Correct Answer: Its phosphate bridges the 3′ and 5′ positions of the same ribose
Explanation:
In cyclic AMP, the phosphate forms an intramolecular phosphodiester linkage between the 3′ and 5′ hydroxyl groups, preventing its normal incorporation into a linear chain.
Incorrect! Try again.
49Which nucleotide derivative is most directly involved in activating sugars for glycogen or glycoprotein biosynthesis?
Biologically important nucleotides
Hard
A.cAMP
B.NADH
C.dGTP
D.UDP-glucose
Correct Answer: UDP-glucose
Explanation:
UDP-glucose is an activated sugar donor. The UDP group provides a leaving group that facilitates transfer of glucose to a growing carbohydrate chain.
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50A double-stranded DNA molecule contains 18% guanine. What percentage of its bases is thymine?
Structure of DNA
Hard
A.36%
B.18%
C.64%
D.32%
Correct Answer: 32%
Explanation:
By Chargaff’s rules, cytosine equals guanine, so GC content is 36%. The remaining 64% is AT, divided equally between adenine and thymine; thymine is therefore 32%.
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51A DNA duplex has one strand with the sequence 5′-AGTC-3′. Which is the correct complementary strand orientation and sequence?
Structure of DNA
Hard
A.5′-TCAG-3′
B.3′-TCAG-5′
C.3′-GACT-5′
D.5′-GACT-3′
Correct Answer: 3′-TCAG-5′
Explanation:
Complementary strands are antiparallel. A 5′-AGTC-3′ strand pairs with 3′-TCAG-5′.
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52Why does a DNA molecule with a higher fraction of GC base pairs generally require a higher temperature to denature under comparable conditions?
Structure of DNA
Hard
A.GC pairs are larger than AT pairs
B.GC pairs contain ribose rather than deoxyribose
C.GC pairs have three hydrogen bonds and favorable stacking interactions
D.GC pairs eliminate all electrostatic repulsion
Correct Answer: GC pairs have three hydrogen bonds and favorable stacking interactions
Explanation:
GC-rich DNA is generally more thermally stable because GC pairs form three hydrogen bonds and often contribute strong base-stacking interactions.
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53A DNA sample is treated with a reagent that cleaves phosphodiester bonds but leaves bases intact. Which structural feature is directly disrupted?
Structure of DNA
Hard
A.The covalent sugar-phosphate backbone
B.The hydrogen bonds within each base
C.The glycosidic bond between base and sugar
D.The sequence-specific identity of each base
Correct Answer: The covalent sugar-phosphate backbone
Explanation:
Phosphodiester bonds connect the 3′ hydroxyl of one sugar to the 5′ phosphate of the next nucleotide, forming the DNA backbone.
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54Which property most directly explains why RNA is generally more susceptible than DNA to alkaline hydrolysis?
Structure of RNA
Hard
A.RNA contains more purines than DNA
B.RNA has a 2′-hydroxyl group that can attack the phosphate
C.RNA contains uracil instead of thymine
D.RNA lacks phosphodiester bonds
Correct Answer: RNA has a 2′-hydroxyl group that can attack the phosphate
Explanation:
Under alkaline conditions, the 2′-hydroxyl of ribose can act intramolecularly on the adjacent phosphate, promoting cleavage of the RNA backbone.
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55A mutation changes a stable RNA hairpin into a sequence unable to form complementary stem pairs. Which structural level is most immediately affected?
Structure of RNA
Hard
A.Secondary structure
B.Primary structure only
C.The identity of the ribose sugar
D.The covalent base-sugar linkage
Correct Answer: Secondary structure
Explanation:
Hairpins are secondary structures formed by intramolecular base pairing. The nucleotide sequence changes at the primary level, but the immediate structural consequence is loss of secondary folding.
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56Why can an RNA molecule form more diverse catalytic structures than a typical single-stranded DNA molecule?
Structure of RNA
Hard
A.RNA is always double-stranded and therefore more rigid
B.RNA uses only purines, which form stronger bonds
C.RNA has a 2′-hydroxyl group and can adopt extensive tertiary interactions
D.RNA contains no negatively charged phosphate groups
Correct Answer: RNA has a 2′-hydroxyl group and can adopt extensive tertiary interactions
Explanation:
The 2′-hydroxyl supports additional hydrogen bonding and conformational possibilities, allowing RNA to form complex three-dimensional catalytic folds.
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57During spectrophotometric analysis, nucleic acid absorbance is measured near 260 nm. What primarily causes this absorbance?
Physical and chemical properties of nucleic acids
Hard
A.Vibrations of phosphodiester bonds
B.Ionization of ribose hydroxyl groups
C.Electronic transitions in conjugated aromatic bases
D.Hydration of sodium counterions
Correct Answer: Electronic transitions in conjugated aromatic bases
Explanation:
The heterocyclic bases contain conjugated electron systems that strongly absorb ultraviolet light near 260 nm.
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58When double-stranded DNA is heated, its absorbance at 260 nm increases. This phenomenon is called hyperchromicity and primarily reflects:
Physical and chemical properties of nucleic acids
Hard
A.Formation of additional phosphodiester bonds
B.Unstacking and exposure of bases during strand separation
C.Loss of all phosphate charges
D.Conversion of deoxyribose into ribose
Correct Answer: Unstacking and exposure of bases during strand separation
Explanation:
Denaturation disrupts base stacking and exposes bases, increasing their ultraviolet absorbance. This increase is the hyperchromic effect.
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59Why does increasing ionic strength generally reduce the melting temperature of neither DNA nor RNA; instead, it commonly increases duplex stability?
Physical and chemical properties of nucleic acids
Hard
A.Salt converts pyrimidines into purines
B.Cations shield repulsion between negatively charged phosphate groups
C.Ions remove all hydrogen bonds from the duplex
D.Cations hydrolyze the glycosidic bonds reversibly
Correct Answer: Cations shield repulsion between negatively charged phosphate groups
Explanation:
The phosphate backbones are negatively charged. Counterions reduce electrostatic repulsion, stabilizing duplex formation and usually increasing the melting temperature.
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60A DNA preparation has an absorbance ratio substantially below the value expected for pure DNA. Which contaminant most plausibly explains this result?
Physical and chemical properties of nucleic acids
Hard
A.Pure ribose
B.Residual protein
C.Additional ultraviolet light
D.Excess sodium chloride
Correct Answer: Residual protein
Explanation:
Proteins absorb strongly near 280 nm because of aromatic amino acids, lowering the ratio of a nucleic acid preparation.
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