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Protein Structure and Folding
2 Results
- Protein Structure and FoldingOpen Access
S-Glutathionylation of human inducible Hsp70 reveals a regulatory mechanism involving the C-terminal α-helical lid
Journal of Biological ChemistryVol. 295Issue 24p8302–8324Published online: April 24, 2020- Jie Yang
- Hong Zhang
- Weibin Gong
- Zhenyan Liu
- Huiwen Wu
- Wanhui Hu
- and others
Cited in Scopus: 13Heat shock protein 70 (Hsp70) proteins are a family of ancient and conserved chaperones. Cysteine modifications have been widely detected among different Hsp70 family members in vivo, but their effects on Hsp70 structure and function are unclear. Here, we treated HeLa cells with diamide, which typically induces disulfide bond formation except in the presence of excess GSH, when glutathionylated cysteines predominate. We show that in these cells, HspA1A (hHsp70) undergoes reversible cysteine modifications, including glutathionylation, potentially at all five cysteine residues. - Protein Structure and FoldingOpen Access
Glutathionylation of the Bacterial Hsp70 Chaperone DnaK Provides a Link between Oxidative Stress and the Heat Shock Response
Journal of Biological ChemistryVol. 291Issue 13p6967–6981Published online: January 28, 2016- Hong Zhang
- Jie Yang
- Si Wu
- Weibin Gong
- Chang Chen
- Sarah Perrett
Cited in Scopus: 32DnaK is the major bacterial Hsp70, participating in DNA replication, protein folding, and the stress response. DnaK cooperates with the Hsp40 co-chaperone DnaJ and the nucleotide exchange factor GrpE. Under non-stress conditions, DnaK binds to the heat shock transcription factor σ32 and facilitates its degradation. Oxidative stress results in temporary inactivation of DnaK due to depletion of cellular ATP and thiol modifications such as glutathionylation until normal cellular ATP levels and a reducing environment are restored.