Redox sensitivity of actin toward an exogenous oxidative stress has recently been reported. We report here the first evidence of in vivo actin redox regulation by a physiological source of reactive oxygen species, specifically those species generated by integrin receptors during cell adhesion. Actin oxidation takes place via the formation of a mixed disulfide between cysteine 374 and glutathione; this modification is essential for spreading and for cytoskeleton organization. Impairment of actin glutathionylation, either through GSH depletion or expression of the C374A redox-insensitive mutant, greatly affects cell spreading and the formation of stress fibers, leading to inhibition of the disassembly of the actinomyosin complex. These data suggest that actin glutathionylation is essential for cell spreading and cytoskeleton organization and that it plays a key role in disassembly of actinomyosin complex during cell adhesion. © 2006 by The American Society for Biochemistry and Molecular Biology, Inc.

Redox regulation of β-actin during integrin-mediated cell adhesion / Fiaschi T.; Cozzi G.; Raugei G.; Formigli L.; Ramponi G.; Chiarugi P.. - In: THE JOURNAL OF BIOLOGICAL CHEMISTRY. - ISSN 0021-9258. - ELETTRONICO. - 281:(2006), pp. 22983-22991. [10.1074/jbc.M603040200]

Redox regulation of β-actin during integrin-mediated cell adhesion

Fiaschi T.;Cozzi G.;Raugei G.;Formigli L.;Ramponi G.;Chiarugi P.
2006

Abstract

Redox sensitivity of actin toward an exogenous oxidative stress has recently been reported. We report here the first evidence of in vivo actin redox regulation by a physiological source of reactive oxygen species, specifically those species generated by integrin receptors during cell adhesion. Actin oxidation takes place via the formation of a mixed disulfide between cysteine 374 and glutathione; this modification is essential for spreading and for cytoskeleton organization. Impairment of actin glutathionylation, either through GSH depletion or expression of the C374A redox-insensitive mutant, greatly affects cell spreading and the formation of stress fibers, leading to inhibition of the disassembly of the actinomyosin complex. These data suggest that actin glutathionylation is essential for cell spreading and cytoskeleton organization and that it plays a key role in disassembly of actinomyosin complex during cell adhesion. © 2006 by The American Society for Biochemistry and Molecular Biology, Inc.
2006
281
22983
22991
Goal 3: Good health and well-being for people
Fiaschi T.; Cozzi G.; Raugei G.; Formigli L.; Ramponi G.; Chiarugi P.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1213400
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