Chapter 11: Problem 3
Compare conservative, semiconservative, and dispersive modes of DNA replication.
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Chapter 11: Problem 3
Compare conservative, semiconservative, and dispersive modes of DNA replication.
These are the key concepts you need to understand to accurately answer the question.
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In this chapter, we focused on how DNA is replicated and synthesized. We also discussed recombination at the DNA level. Along the way, we encountered many opportunities to consider how this information was acquired. On the basis of these discussions, what answers would you propose to the following fundamental questions? (a) What is the experimental basis for concluding that DNA replicates semiconservatively in both bacteria and eukaryotes? (b) How was it demonstrated that DNA synthesis occurs under the direction of DNA polymerase III and not polymerase I? (c) How do we know that in vivo DNA synthesis occurs in the \(5^{\prime}\) to \(3^{\prime}\) direction? (d) How do we know that DNA synthesis is discontinuous on one of the two template strands? (e) What observations reveal that a "telomere problem" exists during eukaryotic DNA replication, and how did we learn of the solution to this problem?
Kornberg showed that nucleotides are added to the 3 ' end of each growing DNA strand. In what way does an exposed 3'-OH group participate in strand elongation?
List and describe the function of the ten subunits constituting DNA polymerase III. Distinguish between the holoenzyme and the core enzyme.
Suppose that \(E .\) coli synthesizes DNA at a rate of 100,000 nucleotides per minute and takes 40 minutes to replicate its chromo- some. (a) How many base pairs are present in the entire \(E .\) coli chromosome? (b) What is the physical length of the chromosome in its helical configuration-that is, what is the circumference of the chromosome if it were opened into a circle?
Summarize and compare the properties of DNA polymerase I, II, and III.
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