Cargando…

A Chemically Competent Thiosulfuranyl Radical on the Escherichia coli Class III Ribonucleotide Reductase

[Image: see text] The class III ribonucleotide reductases (RNRs) are glycyl radical (G•) enzymes that provide the balanced pool of deoxynucleotides required for DNA synthesis and repair in many facultative and obligate anaerobic bacteria and archaea. Unlike the class I and II RNRs, where reducing eq...

Descripción completa

Detalles Bibliográficos
Autores principales: Wei, Yifeng, Mathies, Guinevere, Yokoyama, Kenichi, Chen, Jiahao, Griffin, Robert G., Stubbe, JoAnne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4073831/
https://www.ncbi.nlm.nih.gov/pubmed/24827372
http://dx.doi.org/10.1021/ja5030194
_version_ 1782323148100730880
author Wei, Yifeng
Mathies, Guinevere
Yokoyama, Kenichi
Chen, Jiahao
Griffin, Robert G.
Stubbe, JoAnne
author_facet Wei, Yifeng
Mathies, Guinevere
Yokoyama, Kenichi
Chen, Jiahao
Griffin, Robert G.
Stubbe, JoAnne
author_sort Wei, Yifeng
collection PubMed
description [Image: see text] The class III ribonucleotide reductases (RNRs) are glycyl radical (G•) enzymes that provide the balanced pool of deoxynucleotides required for DNA synthesis and repair in many facultative and obligate anaerobic bacteria and archaea. Unlike the class I and II RNRs, where reducing equivalents for the reaction are delivered by a redoxin (thioredoxin, glutaredoxin, or NrdH) via a pair of conserved active site cysteines, the class III RNRs examined to date use formate as the reductant. Here, we report that reaction of the Escherichia coli class III RNR with CTP (substrate) and ATP (allosteric effector) in the absence of formate leads to loss of the G• concomitant with stoichiometric formation of a new radical species and a “trapped” cytidine derivative that can break down to cytosine. Addition of formate to the new species results in recovery of 80% of the G• and reduction of the cytidine derivative, proposed to be 3′-keto-deoxycytidine, to dCTP and a small amount of cytosine. The structure of the new radical has been identified by 9.5 and 140 GHz EPR spectroscopy on isotopically labeled varieties of the protein to be a thiosulfuranyl radical [RSSR(2)]•, composed of a cysteine thiyl radical stabilized by an interaction with a methionine residue. The presence of a stable radical species on the reaction pathway rationalizes the previously reported [(3)H]-(k(cat)/K(M)) isotope effect of 2.3 with [(3)H]-formate, requiring formate to exchange between the active site and solution during nucleotide reduction. Analogies with the disulfide anion radical proposed to provide the reducing equivalent to the 3′-keto-deoxycytidine intermediate by the class I and II RNRs provide further evidence for the involvement of thiyl radicals in the reductive half-reaction catalyzed by all RNRs.
format Online
Article
Text
id pubmed-4073831
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-40738312015-05-14 A Chemically Competent Thiosulfuranyl Radical on the Escherichia coli Class III Ribonucleotide Reductase Wei, Yifeng Mathies, Guinevere Yokoyama, Kenichi Chen, Jiahao Griffin, Robert G. Stubbe, JoAnne J Am Chem Soc [Image: see text] The class III ribonucleotide reductases (RNRs) are glycyl radical (G•) enzymes that provide the balanced pool of deoxynucleotides required for DNA synthesis and repair in many facultative and obligate anaerobic bacteria and archaea. Unlike the class I and II RNRs, where reducing equivalents for the reaction are delivered by a redoxin (thioredoxin, glutaredoxin, or NrdH) via a pair of conserved active site cysteines, the class III RNRs examined to date use formate as the reductant. Here, we report that reaction of the Escherichia coli class III RNR with CTP (substrate) and ATP (allosteric effector) in the absence of formate leads to loss of the G• concomitant with stoichiometric formation of a new radical species and a “trapped” cytidine derivative that can break down to cytosine. Addition of formate to the new species results in recovery of 80% of the G• and reduction of the cytidine derivative, proposed to be 3′-keto-deoxycytidine, to dCTP and a small amount of cytosine. The structure of the new radical has been identified by 9.5 and 140 GHz EPR spectroscopy on isotopically labeled varieties of the protein to be a thiosulfuranyl radical [RSSR(2)]•, composed of a cysteine thiyl radical stabilized by an interaction with a methionine residue. The presence of a stable radical species on the reaction pathway rationalizes the previously reported [(3)H]-(k(cat)/K(M)) isotope effect of 2.3 with [(3)H]-formate, requiring formate to exchange between the active site and solution during nucleotide reduction. Analogies with the disulfide anion radical proposed to provide the reducing equivalent to the 3′-keto-deoxycytidine intermediate by the class I and II RNRs provide further evidence for the involvement of thiyl radicals in the reductive half-reaction catalyzed by all RNRs. American Chemical Society 2014-05-14 2014-06-25 /pmc/articles/PMC4073831/ /pubmed/24827372 http://dx.doi.org/10.1021/ja5030194 Text en Copyright © 2014 American Chemical Society Open Access on 05/14/2015
spellingShingle Wei, Yifeng
Mathies, Guinevere
Yokoyama, Kenichi
Chen, Jiahao
Griffin, Robert G.
Stubbe, JoAnne
A Chemically Competent Thiosulfuranyl Radical on the Escherichia coli Class III Ribonucleotide Reductase
title A Chemically Competent Thiosulfuranyl Radical on the Escherichia coli Class III Ribonucleotide Reductase
title_full A Chemically Competent Thiosulfuranyl Radical on the Escherichia coli Class III Ribonucleotide Reductase
title_fullStr A Chemically Competent Thiosulfuranyl Radical on the Escherichia coli Class III Ribonucleotide Reductase
title_full_unstemmed A Chemically Competent Thiosulfuranyl Radical on the Escherichia coli Class III Ribonucleotide Reductase
title_short A Chemically Competent Thiosulfuranyl Radical on the Escherichia coli Class III Ribonucleotide Reductase
title_sort chemically competent thiosulfuranyl radical on the escherichia coli class iii ribonucleotide reductase
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4073831/
https://www.ncbi.nlm.nih.gov/pubmed/24827372
http://dx.doi.org/10.1021/ja5030194
work_keys_str_mv AT weiyifeng achemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT mathiesguinevere achemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT yokoyamakenichi achemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT chenjiahao achemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT griffinrobertg achemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT stubbejoanne achemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT weiyifeng chemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT mathiesguinevere chemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT yokoyamakenichi chemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT chenjiahao chemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT griffinrobertg chemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase
AT stubbejoanne chemicallycompetentthiosulfuranylradicalontheescherichiacoliclassiiiribonucleotidereductase