NPGPx is a member of the glutathione peroxidase (GPx) family; however, it lacks GPx enzymatic activity due to the absence of a critical selenocysteine residue, rendering its function an enigma. Here, we show that NPGPx is a newly identified stress sensor that transmits oxidative stress signals by forming the disulfide bond between its Cys57 and Cys86 residues. This oxidized form of NPGPx binds to glucose-regulated protein (GRP)78 and forms covalent bonding intermediates between Cys86 of NPGPx and Cys41/Cys420 of GRP78. Subsequently, the formation of the disulfide bond between Cys41 and Cys420 of GRP78 enhances its chaperone activity. NPGPx-deficient cells display increased reactive oxygen species, accumulated misfolded proteins, and impaired GRP78 chaperone activity. Complete loss of NPGPx in animals causes systemic oxidative stress, increases carcinogenesis, and shortens life span. These results suggest that NPGPx is essential for releasing excessive ER stress by enhancing GRP78 chaperone activity to maintain physiological homeostasis.
Loss of the oxidative stress sensor NPGPx compromises GRP78 chaperone activity and induces systemic disease.
氧化应激传感器 NPGPx 的缺失会损害 GRP78 分子伴侣活性并诱发全身性疾病
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作者:Wei Pei-Chi, Hsieh Yi-Hsuan, Su Mei-I, Jiang Xianzhi, Hsu Pang-Hung, Lo Wen-Ting, Weng Jui-Yun, Jeng Yung-Ming, Wang Ju-Ming, Chen Phang-lang, Chang Yi-Cheng, Lee Kuo-Fen, Tsai Ming-Daw, Shew Jin-Yuh, Lee Wen-Hwa
| 期刊: | Molecular Cell | 影响因子: | 16.600 |
| 时间: | 2012 | 起止号: | 2012 Dec 14; 48(5):747-59 |
| doi: | 10.1016/j.molcel.2012.10.007 | ||
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