Biochemistry
6th Edition
ISBN: 9781305577206
Author: Reginald H. Garrett, Charles M. Grisham
Publisher: Cengage Learning
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Chapter 28, Problem 22P
Interpretation Introduction
Interpretation:
To explain the interaction of RFC with PCNA to recognize primer-template junction during
Concept introduction:
DNA or Deoxyribonucleic acid is a molecule made of two chains which coil around one another. These form a double helix which carries instructions genetical in nature like related to reproduction, growth, development, functioning of the living organisms.
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Chapter 28 Solutions
Biochemistry
Ch. 28 - Semiconservative or Conservative DNA Replication...Ch. 28 - The Enzymatic Activities of DNA Polymerase I (a)...Ch. 28 - Multiple Replication Forks in E. coli I Assuming...Ch. 28 - Multiple Replication Forks in E. coli II On the...Ch. 28 - Molecules of DNA Polymerase III per Cell vs....Ch. 28 - Number of Okazaki Fragments in E. coli and Human...Ch. 28 - The Roles of Helicases and Gyrases How do DNA...Ch. 28 - Human Genome Replication Rate Assume DNA...Ch. 28 - Heteroduplex DNA Formation in Recombination From...Ch. 28 - Homologous Recombination, Heteroduplex DNA, and...
Ch. 28 - Prob. 11PCh. 28 - Prob. 12PCh. 28 - Chemical Mutagenesis of DNA Bases Show the...Ch. 28 - Prob. 14PCh. 28 - Recombination in Immunoglobulin Genes If...Ch. 28 - Helicase Unwinding of the E. coli Chromosome...Ch. 28 - Prob. 17PCh. 28 - Functional Consequences of Y-Family DNA Polymerase...Ch. 28 - Figure 28.11 depicts the eukaryotic cell cycle....Ch. 28 - Figure 28.41 gives some examples of recombination...Ch. 28 - Prob. 21PCh. 28 - Prob. 22P
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- Using the numbered sites on the DNA double helix strands below, where would the DNA Primer ACTTGCGA bind to for DNA Amplification?arrow_forwardExplain the molecular mechanism of DNA polymerization by DNA polymerase and explain why DNA polymerase 3 and not dna polymerase 1 is responsible for replicating the bacterial genome.arrow_forwardWhat basal trasncription factors can only bind to the dna within the pre-replication complex after tata binding protein (TBP) bends the DNA?arrow_forward
- If the sequence 5′-AACGC-3′ were damaged by reactive oxygen species, what would be the most prevalent product, and what would be the result of replication? (Note: show both strands after replication)arrow_forwardHow fast does template DNA spin (expressed in revolutions per second) at an E. coli replication fork?arrow_forwardExplain whether mismatch repair reduce the replication error if it is repaired without regard for which strand served as template.arrow_forward
- Does the addition of a histidine tag affect DNA polymerase activity and or processivity? Give a detailed explanation.arrow_forwardIllustrates a Model of Replication Fork Instructions for Making a Model of the Replication Fork1. Color the individual structures on the worksheet as follows:Adenine = red Thymine = greenGuanine = blue Cytosine = yellowPhosphate = brown Deoxyribose = purplearrow_forwardBriefly discuss the pros and cons of having a nucleoid (as bacteria do) versus a double nuclear membrane surrounding the DNA (as in eukaryotes). List and explain three reasons why DNA replication is very accurate.arrow_forward
- describe the two mechanisms by which DNA polymerase contributes. to increased accuracy during DNA replicationarrow_forwardIt was once thought that the DNA polymerase machinery moves along DNA in a manner analogous to a train on a track. Current evidence indicates that the polymerizing machinery is instead stationary and that the DNA strands are pumped through the complex. What advantages does this stationary mechanism have?arrow_forwarda) Explain how the molecular mechanism of DNA polymerase enhances DNA replication. b) Discuss the characteristic of DNA polymerase 1, Nick translation Proofreadingarrow_forward
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