Match the proteins with their function in DNA replication. unwinds DNA at replication fork forms covalent phosphodiester bonds to join DNA fragments remove primer and replace the RNA with DNA, also has 3'-> 5'exonuclease activity for proofreading synthesizes DNA by adding to the 3' end of the growing strand of DNA adds RNA primer uses an RNA template to facilitate extension of the telomeres in eukaryotes introduces a double-stranded break ahead of the replication fork and swivels the cleaved ends around the central axis to relieve the stress of helix unwinding helicase [Choose ] helicase telomerase DNA polymerase II DNA polymerase I DNA polymerase III DNA primase <> DNA ligase DNA Gyrase (topoiso- merase) exonuclease
Match the proteins with their function in DNA replication. unwinds DNA at replication fork forms covalent phosphodiester bonds to join DNA fragments remove primer and replace the RNA with DNA, also has 3'-> 5'exonuclease activity for proofreading synthesizes DNA by adding to the 3' end of the growing strand of DNA adds RNA primer uses an RNA template to facilitate extension of the telomeres in eukaryotes introduces a double-stranded break ahead of the replication fork and swivels the cleaved ends around the central axis to relieve the stress of helix unwinding helicase [Choose ] helicase telomerase DNA polymerase II DNA polymerase I DNA polymerase III DNA primase <> DNA ligase DNA Gyrase (topoiso- merase) exonuclease
Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
Section: Chapter Questions
Problem 1RQ: The correct sequence of levels forming the structural hierarchy is A. (a) organ, organ system,...
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![Match the proteins with their function in DNA replication.
unwinds DNA at replication fork
forms covalent phosphodiester bonds to
join DNA fragments
remove primer and replace the RNA with
DNA, also has 3'-> 5'exonuclease activity
for proofreading
synthesizes DNA by adding to the 3' end
of the growing strand of DNA
adds RNA primer
uses an RNA template to facilitate
extension of the telomeres in eukaryotes
introduces a double-stranded break ahead
of the replication fork and swivels the
cleaved ends around the central axis to
relieve the stress of helix unwinding
helicase
[Choose ]
✓ helicase
telomerase
DNA polymerase II
DNA polymerase I
DNA polymerase III
DNA primase
DNA ligase
D
DNA Gyrase (topoiso-
merase)
exonuclease](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F22e68951-e609-4dc7-8cc4-bd7643bc2faf%2Ff28bca09-cb5a-4c96-aca8-3b4c8df7eb51%2Fly45x4rn_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Match the proteins with their function in DNA replication.
unwinds DNA at replication fork
forms covalent phosphodiester bonds to
join DNA fragments
remove primer and replace the RNA with
DNA, also has 3'-> 5'exonuclease activity
for proofreading
synthesizes DNA by adding to the 3' end
of the growing strand of DNA
adds RNA primer
uses an RNA template to facilitate
extension of the telomeres in eukaryotes
introduces a double-stranded break ahead
of the replication fork and swivels the
cleaved ends around the central axis to
relieve the stress of helix unwinding
helicase
[Choose ]
✓ helicase
telomerase
DNA polymerase II
DNA polymerase I
DNA polymerase III
DNA primase
DNA ligase
D
DNA Gyrase (topoiso-
merase)
exonuclease
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