Week 6 - Repair Flashcards

1
Q

completing the repair

A
  • Mut complex binds mismatch and puts a nick when GATC is encountered
  • GATC is encountered in 2 ways
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2
Q

upstream GATC

A
  • 5’ exonuclease will hydrolyze large fragment
  • DNA pol fills fragment and leaves nick
  • DNA helicase seals nick
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3
Q

downstream GATC

A
  • 3’ exonuclease will hydrolyze large fragment
  • DNA pol (3’ proofreading activity) fills fragment and leaves nick
  • DNA helicase seals nick
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4
Q

proteins required in mismatch repair

A
  • MutL/MutS
  • MutH
  • helicase/exonuclease
  • pol
  • ligase
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5
Q

eukaryotic flagging

A

there’s a different flagging process for eukaryotes as eukaryotes do not have hemimethylated strands

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6
Q

base excision

A
  • repairs spontaneous deamination mutations

- identifies abnormal bases

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7
Q

base excision repair mechanism

A
  • DNA glycosylase identifies abnormal base
  • AP endonucleas binds to AP site and breaks phosphodiester bond
  • DNA pol 1 removes overhang phosphorus
  • nick is sealed by DNA ligase
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8
Q

DNA glycosylase

A

recognizes abnormal base then breaks the N-beta-glycosyl bond

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9
Q

proteins required in base excision repair

A
  • DNA glycosylases
  • AP endonucleases
  • 5’ exonuclease
  • DNA pol 1
  • DNA ligase
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10
Q

nucleotide excision repair

A
  • fixes distortions of the helix
  • the only repair humans need (pyrimidine, usually thymine, dimers)
  • important in skin
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11
Q

nucleotide excision repair mechanism

A
  • excinuclease binds pyrimidine dimer
  • helicase unwinds ds region
  • excinuclease creates 2 nicks
  • DNA pol 1 and DNA ligase stabilize ss DNA, create new strand, and seals nicks
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12
Q

xeroderma pigmentosum

A

mutation in any gene that’s invovled in repair of thymine dimers

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