BIOLOGY
BIOLOGY
12th Edition
ISBN: 9781260169614
Author: Raven
Publisher: RENT MCG
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Chapter 14, Problem 8A

When mutations that affected DNA replication were isolated, two kinds were found. In cultures that were not synchronized (that is, not all dividing at the same time), one class put an immediate halt to replication, whereas the other put a much slower stop to the process. The first class affects functions at the replication fork like polymerase and primase. The second class affects functions necessary for

a. elongation on the lagging but not the leading strand.

b. elongation on the leading but not the lagging strand.

c. initiation: cells complete replication but cannot start a new round.

d. the sliding clamp: loss makes the polymerase slower.

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What is the difference between the leading strand and the lagging strand in DNA replication?   a There are different DNA polymerases involved in elongation of the leading strand and the lagging strand.   b The leading strand is synthesized continuously in the 5' → 3' direction, while the lagging strand is synthesized discontinuously in the 5' → 3' direction.   c The leading strand requires an RNA primer, whereas the lagging strand does not.   d The leading strand is synthesized in the 3' → 5' direction in a discontinuous fashion, while the lagging strand is synthesized in the 5' → 3' direction in a continuous fashion.
You are studying a colony of cells and determine that some of these cells have a mutated DNA polymerase I that results in loss of function of this enzyme. A)   What will the effect of the mutation in DNA polymerase I be on DNA replication? In your answer make sure to describe what would be observed in the leading and lagging strand and explain your reasoning.  B)   Will this mutation in DNA polymerase I have an impact on another step in DNA replication? In your answer make sure to indicate whether DNA replication will be impacted or not. If it is not, explain why. If it is impacted, then describe the step that is impacted and name the molecule or enzyme involved.
During DNA replication, short RNA primers are made by the Primase. Why?   a. To provide a 3'-OH so DNA polymerase can begin DNA synthesis.   b. To recruit single stranded binding proteins to the correct location.   c. To identify the termination sequence for DNA polymerase during DNA synthesis.   d. To provide a 3'-OH so RNA polymerase can begin DNA synthesis.   e. To identify the origin of replication to recruit the origin replication complex to the correct genomic location.

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