Biochem - DNA Flashcards

1
Q

Chromatin

A

Condensed DNA w/ histones – nucleosome core (histone with DNA wrapped 2x) linked by H1

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2
Q

Histone

A

H2A x2
H2B x 2
H3 x2
H4 x2

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3
Q

Deamination of cytosine

A

Uracil

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4
Q

Purines synthesis required substrates

A

“GAG”
Glycine
Aspartate - N
Glutamine – N

tetrahydroFolate
CO2

“cat PURRR until they GAG and Cough on Fur balls”

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5
Q

Pyrimidine synthesis required substrates

A

Aspartate
CO2
Glutamine
ATP

Carbamyol phosphate

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6
Q

CPS-2

A

Carbamoyl phosphate synthase 2

Rate limiting step of pyrimidine synthesis

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7
Q

CPS1 vs CPS2

A

CPS1:
Urea cycle
In mitochondria
Ammonia source of nitrogen

CPS2:
Pyrimidine synthesis
Found in cytosol
Glutamine source of nitrogen

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8
Q

Draw out prokaryotic DNA replication

A

Page 516

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9
Q

Exonuclease activity of DNA polymerase

A

DNA polymerase I and III can add and remove nt from end of DNA strand

DNA polymerase III works 3’-5’

DNA polymerase I:
3’ – 5’ 1 nt at a time
5’ – 3’ 1-10 nt at a time

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10
Q

Eukaryote DNA polymerase alpha

A

Makes own primer

Replicates 1st 20 nt

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11
Q

Eukaryote DNA polymerase delta

A

Builds okazaki fragments on lagging strand

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12
Q

Eukaryote DNA polymerase epsilon

A

Elongates leading strand

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13
Q

Eukaryote DNA poly beta

A

DNA repair

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14
Q

Eukaryote DNA poly gamma

A

mt DNA replication

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15
Q

Silent mutation

A

Genetic code change, same aa

Final polypeptide unchanged

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16
Q

Missense mutation

A

Change aa sequence

Polypeptide product different structural or functional properities

17
Q

Nonsense mutation

A

Base substitution leads to stop codon

18
Q

Frameshift mutation

A

Nt added or delated shifting reading frame

Downstream aa sequence completely different

19
Q

Pyrimidine dimer

A

2 pyrimidines on same strand of DNA get covalently bonded together
Ts
UV damage

20
Q

Mismatch repair

A

Wrong base added
Nick daughter strand up stream
Remove several bases and remake strand and fill in gap created

21
Q

Nucleotide excision repair

A

Damaged after creation
Remove entire nt and replace it
Recognizes large bulky areas of damaged DNA

Pyrmidine dimers

Endonucleases remove damaged nt
DNA polymerase fills in gap
DNA ligase joins fragments

22
Q

Base excision repair

A

Nonbulky damage just base damaged

Loss of amino group
Oxidized
Methylated

Glycosylase – recognized damaged base – removes damaged base

Lyase – cuts 3’ end of backbone

Endonuclease – cuts 5’ end, removes backbone

Type beta DNA polymerase fills in gaps

Ligase seals it

23
Q

Double strand repair

A

Nonhomologous end joining

Clean break in both strands of DNA, gluing back together

Use this if no overlapping segments of DNA

24
Q

Hereditary nonpolyposis colorectal cancer

A

Defective mismatch repair

25
Q

Xeroderma pigmentosum

A

AR

Defective nucleotide excision repair

Increased risk skin cancer, can’t repair UV damage

Extreme – avoid all sunlight

26
Q

Bloom syndrome

A

Mutation in helicase
-DNA replication and repair

hypersensitive to sunlight
increased susceptibility to leukemias and lymphomas 
-immunodeficiency
-infertility
-facial anomalies
27
Q

Ataxia-telangectasia

A

Defective repair of dsDNA breaks

  • IgA deficiency
  • Ataxia
  • poor smooth pursuit of eyes
  • high AFP after 8 mo
  • sensitive to ionizing radiation
28
Q

BRCA ½

A

Defective repair of dsNDA breaks