Literature DB >> 20218863

Redox regulation of actin by thioredoxin-1 is mediated by the interaction of the proteins via cysteine 62.

Xiaogang Wang1, Shukuan Ling, Dingsheng Zhao, Qiao Sun, Qi Li, Feng Wu, Jielin Nie, Lina Qu, Bo Wang, Xun Shen, Yanqiang Bai, Yingxian Li, Yinghui Li.   

Abstract

Actin is a highly conserved protein in eukaryotic cells, and has been identified as one of the main redox targets by redox proteomics under oxidative stress. However, little is known about the mechanisms of regulation of the redox state of actin. In this study, we investigated how thioredoxin-1 (Trx1) affected the redox state of actin and its polymerization under oxidative stress in SH-SY5Y cells. Trx1 decreased the levels of reactive oxygen species (ROS) in the cells, and cysteine residues at positions 32, 35, and 69 of the Trx1 protein were active sites for redox regulation. Actin could be kept in a reduced state by Trx1 under H(2)O(2) stimulation. A physical interaction was found to exist between actin and Trx1. Cysteine 62 in Trx1 was the key site that interacted with actin, and it was required to maintain cellular viability and anti-apoptotic function. Taken together, these results suggested that Trx1 could protect cells from apoptosis under oxidative stress not only by increasing the total antioxidant capability and decreasing the ROS levels, but also by stabilizing the actin cytoskeletal system, which cooperatively contributed to the enhancement of cell viability and worked against apoptosis.

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Year:  2010        PMID: 20218863     DOI: 10.1089/ars.2009.2833

Source DB:  PubMed          Journal:  Antioxid Redox Signal        ISSN: 1523-0864            Impact factor:   8.401


  16 in total

1.  Thioredoxin reductase linked to cytoskeleton by focal adhesion kinase reverses actin S-nitrosylation and restores neutrophil β(2) integrin function.

Authors:  Stephen R Thom; Veena M Bhopale; Tatyana N Milovanova; Ming Yang; Marina Bogush
Journal:  J Biol Chem       Date:  2012-07-09       Impact factor: 5.157

2.  A novel mouse model for the identification of thioredoxin-1 protein interactions.

Authors:  Michelle L Booze; Jason M Hansen; Peter F Vitiello
Journal:  Free Radic Biol Med       Date:  2016-09-14       Impact factor: 7.376

Review 3.  The cysteine proteome.

Authors:  Young-Mi Go; Joshua D Chandler; Dean P Jones
Journal:  Free Radic Biol Med       Date:  2015-04-03       Impact factor: 7.376

4.  Actin cytoskeleton redox proteome oxidation by cadmium.

Authors:  Young-Mi Go; Michael Orr; Dean P Jones
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2013-09-27       Impact factor: 5.464

5.  Penaeus monodon thioredoxin restores the DNA binding activity of oxidized white spot syndrome virus IE1.

Authors:  Jiun-Yan Huang; Wang-Jing Liu; Han-Ching Wang; Der-Yen Lee; Jiann-Horng Leu; Hao-Ching Wang; Mong-Hsun Tsai; Shih-Ting Kang; I-Tung Chen; Guang-Hsiung Kou; Geen-Dong Chang; Chu-Fang Lo
Journal:  Antioxid Redox Signal       Date:  2012-04-16       Impact factor: 8.401

6.  Caspase-1-mediated pathway promotes generation of thromboinflammatory microparticles.

Authors:  Andrea S Rothmeier; Patrizia Marchese; Brian G Petrich; Christian Furlan-Freguia; Mark H Ginsberg; Zaverio M Ruggeri; Wolfram Ruf
Journal:  J Clin Invest       Date:  2015-02-23       Impact factor: 14.808

7.  Ethanol Attenuates Histiotrophic Nutrition Pathways and Alters the Intracellular Redox Environment and Thiol Proteome during Rat Organogenesis.

Authors:  Joseph L Jilek; Karilyn E Sant; Katherine H Cho; Matthew S Reed; Jan Pohl; Jason M Hansen; Craig Harris
Journal:  Toxicol Sci       Date:  2015-07-15       Impact factor: 4.849

Review 8.  Cysteine oxidative posttranslational modifications: emerging regulation in the cardiovascular system.

Authors:  Heaseung S Chung; Sheng-Bing Wang; Vidya Venkatraman; Christopher I Murray; Jennifer E Van Eyk
Journal:  Circ Res       Date:  2013-01-18       Impact factor: 17.367

9.  Comparative proteomic analysis of cysteine oxidation in colorectal cancer patients.

Authors:  Hee-Young Yang; Kee-Oh Chay; Joseph Kwon; Sang-Oh Kwon; Young-Kyu Park; Tae-Hoon Lee
Journal:  Mol Cells       Date:  2013-05-14       Impact factor: 5.034

10.  Selective targeting of the cysteine proteome by thioredoxin and glutathione redox systems.

Authors:  Young-Mi Go; James R Roede; Douglas I Walker; Duc M Duong; Nicholas T Seyfried; Michael Orr; Yongliang Liang; Kurt D Pennell; Dean P Jones
Journal:  Mol Cell Proteomics       Date:  2013-08-14       Impact factor: 5.911

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