Translation Flashcards

1
Q

tRNA structure

A

~ simple cloverleaf structure
~ D-loop, T-loop and anti-codon loop
~ acceptor stem with a 3’ CCA tail
~ contains modified bases (T + D)

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2
Q

3’ CCA tail

A

added post transcriptionally

site of amino acid attachment

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3
Q

Aminoacylation/Charging

A

tRNA-amino acid attachment
~ uses ATP as a cofactor
~ a.a. attached to 3/2’ OH of terminal A of CCA tail
~ produces an aminoacyl-tRNA
~ each a.a./tRNA combo has its own enzyme

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4
Q

Wobble pairing

A

when the 3rd base in the codon/anti-codon shows flexibility in its base pairing

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5
Q

Method of specificity of aminoacyltransferases

A
  1. size exclusion of a.a from aminoacylation site
  2. editing pre-transfer in editing site (amino acid rejected)
  3. editing post-transfer editing site breaks bonds
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6
Q

IF1 and IF3

A

help guide the initiator tRNA to the right place on the small subunit
prevent binding of the large subunit

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7
Q

EF-Ts

A

exchanges GDP for GTP, regenerating EF-Tu

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8
Q

EF-Tu

A

elongation factor
~ forms a complex with GTP and aminoacyl-tRNA and helps it to bind tot he exposed codon in the A site
~ leaves after undergoing GTP hydrolysis

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9
Q

EF-G

A

helps the ribosome move along one codon in the 3’ direction

~ released after GTP hydrolysis

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10
Q

The peptide transferase reaction is catalysed by a …

A

ribozyme

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11
Q

Ribozyme

A

RNA section of the 50S subunit of the ribosome

~ involved with rRNA splicing and the removal of introns

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12
Q

Initiation

A

~ IF3 and IF1 are bound to the small ribosomal unit in the E and A sites
~ IF2 joins the mRNA and the small subunit together by hydrolysing GTP
~ a.a-tRNA binds to the P-site, releasing IF1-3 and causing the large ribosomal subunit to bind

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13
Q

Elongation

A

~ repeated steps of tRNA binding
~ insertion of a.a-tRNA at A site dislodges the uncharged tRNA at E site
~ peptide chain gets longer

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14
Q

Termination

A

~ when a stop codon is reached, a release factor (RF1 or RF2) binds to the stop codon in the A site

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15
Q

Recycling

A

~ ribosome recycling factor and EFG-GTP promote complex disassembly
~ IF3 binds to small subunit to stabilise it

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