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If the sequence of the 5'-3'DNA strand is AATGCTAC, then the complementary DNA sequence has the...
Which enzyme lays down the signal for DNA polymerase to bind and start creating the complementary strand of DNA? Which enzyme helps relieve tension in the DNA strand as it is pulled apart for replication? What specific structure is needed in order for DNA polymerase to start DNA replication? Select one: a. RNA primer b. DNA primer c. DNA polymerase d. nucleic acid e. nucleotide sequence Which of these is unique to the lagging strand of DNA? Select one: a....
unwinds the dna double helix, synthesizes a short complementary
piece of RNA primer, adds complementary nucleotides in 5' to 3'
direction, forms covalent bonds between Okazaki
fragments
Primase [Choose ] DNA polymerase [Choose] DNA ligase [Choose] Helicase [Choose ]
D Question 1 (Matching) Match the enzyme/structure with its role in DNA replication. DNA polymerase synthesizes the new strand of RNA primase Choose synthesizes the new strand of DNA synthesizes a short fragment of complementary RNA attach to template DNA strands to prevent hydrogen bonding Uncoils the supercoil of prokaryotic chromosomes connects Okazaki fragments of new lagging strand of DNA unwinds and unzips the double stranded DNA Single stranded binding proteins (SSB's) DNA Ligase [Choose] Helicase [Choose) DNA Gyrase (Choose]...
Where would you find histones? A. Part of the RNA polymerase complex that transcribes DNA. B. In a virus, helping to "inject" foreign DNA into a cell. C. Bound to an enhancer to regulate transcription. D. Asscoiated with DNA to make chromatin. What is the role of DNA ligase during DNA replication? A. It unwinds the parental double helix. B. It synthesizes RNA nucleotides to make a primer. C. It joins lagging strand (Okazaki) fragments together. D. It stabilizes the...
BioLoG 11. chose the order below that most closely represents the order in which the following proteins participate in DNA replication. a. helicase, single stranded binging protein, primase DNA polymerase b. single -stranded binding protein, primase DNA polymerase helicase c. primase, DNA polymerase, single- stranded binding protein, helicase d. helicase, single- stranded binding protein DNA polymerase, primase. 12. what is the function of the enzyme primase during DNA replication? a. to unwind the double helix to prime it for replication...
5 Describe the process of DNA replication; include the following terms: antiparallel structure, DNA Okazaki fragments, DNA ligase, primer, primase, helicase, topoisomerase, single-strand binding proteins. Describe the function of Helicase, Primase, topoisomerase, DNA Polymerase III, DNA Polymerase I, DNA ligase
DNA replication involves the enzyme to unwind the double stranded DNA and enzyme to seal the Okazaki fragments O Polymerase, ligase O Helicase, polymerase Helicase, ligase Ligase, primase Reset Selection Mark for Review What's This?
In the following diagram, label the following: leading and lagging strand, Okazaki fragment, DNA polymerase, DNA ligase, helicase, RNA primase, singlestrand binding proteins, RNA primer, replication fork, topoisomerase and the 5' and 3' ends of strands.
Vocabulary: DNA Replication A. Helicase B. Primase C. Single Strand Binding Protein (SSB) D. Topoisomerase E. Origin of Replication F. DNA Polymerase G. Leading Strand H. Lagging strand I. DNA Ligase J. Okazaki Fragment K. Replication Fork L. RNA Primer M. Topoisomerase .1. Site where the replication of a DNA molecule begins. 2. The new continuous complementary DNA strand synthesized in the direction for the replication fork. 3. A discontinuously synthesized DNA strand that elongates in a direction away from the replication fork 4. Relaxes...
Match the enzyme activity in DNA synthesis with its function. DNA pol III (_) fragments Helicase (_) Primase (_) using template strand DNA pol I (_) double helix DNA ligase (_) adds nucleotides Topoisomerase (_) primer A. anneals DNA B. relieves overwinding C. adds nucleotides D. unwinds parental E. removes RNA primer, F. adds a short RNA 10 Proofreading and repair of the DNA double helix does NOT involves a. detecting a mis-match in base pairs. b. removing the mis-match...