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UvrABC

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[[Image:3pih.png|left|200px|thumb|Crystal structure of UvrA complex with DNA, pyrophosphate and Zn+2 ion (grey) [[3pih]]]]
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{{STRUCTURE_3pih| PDB=3pih | SIZE=400| SCENE= |right|CAPTION= UvrA complex with DNA, pyrophosphate and Zn+2 ion (grey) [[3pih]] }}
{{STRUCTURE_3pih| PDB=3pih | SIZE=400| SCENE= |right|CAPTION= UvrA complex with DNA, pyrophosphate and Zn+2 ion (grey) [[3pih]] }}
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'''UvrABC''' endonuclease is an E. coli enzyme complex involved in DNA repair. UvrABC removes 12 nucleotides around a DNA mutation replacing them with the correct one. For details on the UvrA-UvrB complex see [[UvrA-UvrB interaction domains]].
'''UvrABC''' endonuclease is an E. coli enzyme complex involved in DNA repair. UvrABC removes 12 nucleotides around a DNA mutation replacing them with the correct one. For details on the UvrA-UvrB complex see [[UvrA-UvrB interaction domains]].

Revision as of 09:15, 21 August 2014

Template:STRUCTURE 3pih

UvrABC endonuclease is an E. coli enzyme complex involved in DNA repair. UvrABC removes 12 nucleotides around a DNA mutation replacing them with the correct one. For details on the UvrA-UvrB complex see UvrA-UvrB interaction domains.

Contents

3D structures of UvrABC

Updated on 21-August-2014

UvrA

3pih – TmUvrA + DNA – Thermotoga maritima
3zqj – UvrA – Mycobacterium tuberculosis
4dfc – EcUvrA + Transcription-repair-coupling factor – Escherichia coli
2r6f – BstUvrA – Bacillus stearothermophilus
3ux8 – GeUvrA - Geobacillus

UvrB

1d2m, 1c4o – UvrB – Thermus thermophilus
1d9x – BcUvrB – Bacillus caldotenax
1t5l – BcUvrB (mutant)
1qoj – EcUvrB C terminal
1e52 – EcUvrB C terminal - NMR
1d9z – BcUvrB + ATP
2fdc – BcUvrB + DNA
2d7d, 2nmv, 3v4r – BsUvrB + DNA – Bacillus subtilis

UvrC

1kft – EcUvrC C terminal
2nrr, 2nrt, 2nrv, 2nrw, 2nrx, 2nrz – TmUvrC C terminal
1ycz, 1yd0, 1yd1 – TmUvrC N terminal
1yd2, 1yd3, 1yd4, 1yd5 – TmUvrC N terminal (mutant)
1yd6 – BcUvrC N terminal
3c65 – BstUvrC

UvrA-UvrB

3fpn – BstUvrA + UvrB
3uwx – GeUvrA + UvrB

Proteopedia Page Contributors and Editors (what is this?)

Michal Harel, Alexander Berchansky

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