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Cited 15 time in webofscience Cited 16 time in scopus
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Redox, mutagenic and structural studies of the glutaredoxin/arsenate reductase couple from the cyanobacterium Synechocystis sp PCC 6803

Authors
Kim, Sang GonChung, Jung-SungSutton, R. BryanLee, Jong-SunLopez-Maury, LuisLee, Sang YeolFlorencio, Francisco J.Lin, TeresaZabet-Moghaddam, MasoudWood, Matthew J.Nayak, KamakshiMadem, VivekTripathy, Jatindra N.Kim, Sung-KunKnaff, David B.
Issue Date
Feb-2012
Publisher
ELSEVIER
Keywords
Arsenate reductase; Glutaredoxin; Synechocystis; Redox reactions; Dithiol-disulfide couples
Citation
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEINS AND PROTEOMICS, v.1824, no.2, pp 392 - 403
Pages
12
Indexed
SCI
SCIE
SCOPUS
Journal Title
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEINS AND PROTEOMICS
Volume
1824
Number
2
Start Page
392
End Page
403
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/22335
DOI
10.1016/j.bbapap.2011.10.012
ISSN
1570-9639
1878-1454
Abstract
The arsenate reductase from the cyanobacterium Synechocystis sp. PCC 6803 has been characterized in terms of the redox properties of its cysteine residues and their role in the reaction catalyzed by the enzyme. Of the five cysteines present in the enzyme, two (Cys13 and Cys35) have been shown not to be required for catalysis, while Cys8, Cys80 and Cys82 have been shown to be essential. The as-isolated enzyme contains a single disulfide, formed between Cys80 and Cys82, with an oxidation-reduction midpoint potential (E-m) value of -165 mV at pH 7.0. It has been shown that Cys15 is the only one of the four cysteines present in Synechocystis sp. PCC 6803 glutaredoxin A required for its ability to serve as an electron donor to arsenate reductase, while the other three cysteines (Cys18, Cys36 and Cys70) play no role. Glutaredoxin A has been shown to contain a single redox-active disulfide/dithiol couple, with a two-electron. E-m value of -220 mV at pH 7.0. One cysteine in this disulfide/dithiol couple has been shown to undergo glutathionylation. An X-ray crystal structure, at 1.8 angstrom resolution, has been obtained for glutaredoxin A. The probable orientations of arsenate reductase disulfide bonds present in the resting enzyme and in a likely reaction intermediate of the enzyme have been examined by in silico modeling, as has the surface environment of arsenate reductase in the vicinity of Cys8, the likely site for the initial reaction between arsenate and the enzyme. (C) 2011 Elsevier B.V. All rights reserved.
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