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PMID: 11781308 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Activation mechanism of Gi and Go by reactive oxygen species.

The Journal of biological chemistry ·Vol. 277 ·No. 11 ·2002-03-15 ·Pages 9036-42

Nishida M, Schey KL, Takagahara S, Kontani K, Katada T, Urano Y, Nagano T, Nagao T, Kurose H

Abstract

Reactive oxygen species are proposed to work as intracellular mediators. One of their target proteins is the alpha subunit of heterotrimeric GTP-binding proteins (Galpha(i) and Galpha(o)), leading to activation. H(2)O(2) is one of the reactive oxygen species and activates purified Galpha(i2). However, the activation requires the presence of Fe(2+), suggesting that H(2)O(2) is converted to more reactive species such as c*OH. The analysis with mass spectrometry shows that seven cysteine residues (Cys(66), Cys(112), Cys(140), Cys(255), Cys(287), Cys(326), and Cys(352)) of Galpha(i2) are modified by the treatment with *OH. Among these cysteine residues, Cys(66), Cys(112), Cys(140), Cys(255), and Cys(352) are not involved in *OH-induced activation of Galpha(i2). Although the modification of Cys(287) but not Cys(326) is required for subunit dissociation, the modification of both Cys(287) and Cys(326) is necessary for the activation of Galpha(i2) as determined by pertussis toxin-catalyzed ADP-ribosylation, conformation-dependent change of trypsin digestion pattern or guanosine 5'-3-O-(thio)triphosphate binding. Wild type Galpha(i2) but not Cys(287)- or Cys(326)-substituted mutants are activated by UV light, singlet oxygen, superoxide anion, and nitric oxide, indicating that these oxidative stresses activate Galpha(i2) by the mechanism similar to *OH-induced activation. Because Cys(287) exists only in G(i) family, this study explains the selective activation of G(i)/G(o) by oxidative stresses.

MeSH Terms
Adenosine Diphosphate Ribose/metabolism Amino Acid Sequence Animals GTP-Binding Protein alpha Subunits, Gi-Go/metabolism Guanosine 5'-O-(3-Thiotriphosphate)/metabolism Heterotrimeric GTP-Binding Proteins/metabolism Hydroxyl Radical Mitogen-Activated Protein Kinases/metabolism Molecular Sequence Data Rats Rats, Sprague-Dawley Reactive Oxygen Species/pharmacology
Chemicals
Reactive Oxygen Species Adenosine Diphosphate Ribose Hydroxyl Radical Guanosine 5'-O-(3-Thiotriphosphate) Mitogen-Activated Protein Kinases GTP-Binding Protein alpha Subunits, Gi-Go Heterotrimeric GTP-Binding Proteins
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Nishida Motohiro
Laboratory of Pharmacology and Toxicology, Physiological Chemistry, and Bioorganic and Medicinal Chemistry, Graduate School of Pharmaceutical Sciences, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Schey Kevin L
Takagahara Shuichi
Kontani Kenji
Katada Toshiaki
Urano Yasuteru
Nagano Tetsuo
Nagao Taku
Kurose Hitoshi
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-03-15
Epub
2002-00-07
Pages
9036-42
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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