Title of article :
Redox-regulated cochaperone activity of the human DnaJ homolog Hdj2
Author/Authors :
Hoon-Seok Choi، نويسنده , , Sang Pil Lee، نويسنده , , Kyung Soon Kim، نويسنده , , Chae Young Hwang، نويسنده , , Yu-Ran Lee، نويسنده , , Suhn-Kee Chae، نويسنده , , Yeon-Soo Kim، نويسنده , , Ho Zoon Chae، نويسنده , , Ki-Sun Kwon، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
9
From page :
651
To page :
659
Abstract :
The human DnaJ homolog Hdj2 is a cochaperone containing a cysteine-rich zinc finger domain. We identified a specific interaction of Hdj2 with the cellular redox enzyme thioredoxin using a yeast two-hybrid assay and a coimmunoprecipitation assay, thereby investigating how the redox environment of the cell regulates Hdj2 function. In reconstitution experiments with Hsc70, we found that treatment with H2O2 caused the oxidative inactivation of Hdj2 cochaperone activity. Hdj2 inactivation paralleled the oxidation of cysteine thiols and concomitant release of coordinated zinc, suggesting a role of cysteine residues in the zinc finger domain of Hdj2 as a redox sensor of chaperone-mediated protein-folding machinery. H2O2-induced negative regulation of Hdj2 cochaperone activity was also confirmed in mammalian cells using luciferase as a foreign reporter cotransfected with Hsc70 and Hdj2. The in vivo oxidation of cysteine residues in Hdj2 was detected only in thioredoxin-knockdown cells, implying that thioredoxin is involved in the in vivo reduction. The oxidative inactivation of Hdj2 was reversible. Wild-type thioredoxin notably recovered the oxidatively inactivated Hdj2 activity accompanied by the reincorporation of zinc, whereas the catalytically inactive mutant thioredoxin (Cys32Ser/Cys35Ser) did not. Taken together, we propose that oxidation and reduction reversibly regulate Hdj2 function in response to the redox states of the cell.
Keywords :
protein folding , zinc finger , Chaperone , free radical , thioredoxin , oxidative stress
Journal title :
Free Radical Biology and Medicine
Serial Year :
2006
Journal title :
Free Radical Biology and Medicine
Record number :
520443
Link To Document :
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