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泛素结合酶的氧化还原调节:使用硫醇特异性氧化剂二酰胺的机制见解

Redox regulation of ubiquitin-conjugating enzymes: mechanistic insights using the thiol-specific oxidant diamide.

作者信息

Obin M, Shang F, Gong X, Handelman G, Blumberg J, Taylor A

机构信息

Laboratory for Nutrition and Vision Research, JMUSDA-HNRCA at Tufts University, Boston, Massachusetts 02111, USA.

出版信息

FASEB J. 1998 May;12(7):561-9. doi: 10.1096/fasebj.12.7.561.

Abstract

The ubiquitin-proteasome pathway (UPP) regulates critical cell processes, including the cell cycle, cytokine-induced gene expression, differentiation, and cell death. Recently we demonstrated that this pathway responds to oxidative stress in mammalian cells and proposed that activities of ubiquitin-activating enzyme (E1) and ubiquitin-conjugating enzymes (E2s) are regulated by cellular redox status (i.e., GSSG:GSH ratio). To test this hypothesis, we altered the GSSG:GSH ratio in retinal pigment epithelial cells with the thiol-specific oxidant, diamide, and assessed activities of the UPP. Treatment of cells with diamide resulted in a dose-dependent increase in the GSSG:GSH ratio resulting from loss of GSH and a coincident increase in GSSG. Increases in the GSSG:GSH ratio from 0.02 in untreated cells to > or = 0.5 in diamide-treated cells were accompanied by dose-dependent reductions in the levels of endogenous Ub-protein conjugates, endogenous E1-ubiquitin thiol esters, and de novo ubiquitin-conjugating activity. As determined by the ability to form E1-ubiquitin and E2s-ubiquitin thiol esters, E1 and E2s were both inhibited by elevated GSSG:GSH ratios. Inhibition of E1 was associated with the formation of E1-protein mixed disulfides. Activities of E1 and E2s gradually recovered to preoxidation levels, coincident with gradual recovery of the GSSG:GSH ratio. These data support S-thiolation/dethiolation as a mechanism regulating E1 and E2 activities in response to oxidant insult. Ubiquitin-dependent proteolytic capacity was regulated by the GSSG:GSH ratio in a manner consistent with altered ubiquitin-conjugating activity. However, ubiquitin-independent proteolysis was unaffected by changes in the GSSG:GSH ratio. Potential adaptive and pathological consequences of redox regulation of UPP activities are discussed.

摘要

泛素 - 蛋白酶体途径(UPP)调节关键的细胞过程,包括细胞周期、细胞因子诱导的基因表达、分化和细胞死亡。最近我们证明了该途径对哺乳动物细胞中的氧化应激有反应,并提出泛素激活酶(E1)和泛素结合酶(E2s)的活性受细胞氧化还原状态(即GSSG:GSH比率)的调节。为了验证这一假设,我们用硫醇特异性氧化剂二酰胺改变视网膜色素上皮细胞中的GSSG:GSH比率,并评估UPP的活性。用二酰胺处理细胞导致GSSG:GSH比率呈剂量依赖性增加,这是由于GSH的损失和GSSG的同时增加所致。GSSG:GSH比率从未处理细胞中的0.02增加到二酰胺处理细胞中的≥0.5,同时内源性Ub - 蛋白质缀合物、内源性E1 - 泛素硫酯和从头泛素结合活性的水平呈剂量依赖性降低。通过形成E1 - 泛素和E2s - 泛素硫酯的能力确定,E1和E2s均受到升高的GSSG:GSH比率的抑制。E1的抑制与E1 - 蛋白质混合二硫键的形成有关。E1和E2s的活性逐渐恢复到氧化前水平,与GSSG:GSH比率的逐渐恢复一致。这些数据支持S - 硫醇化/去硫醇化作为一种机制,可调节E1和E2活性以应对氧化损伤。泛素依赖性蛋白水解能力受GSSG:GSH比率的调节,其方式与泛素结合活性的改变一致。然而,泛素非依赖性蛋白水解不受GSSG:GSH比率变化的影响。本文讨论了UPP活性氧化还原调节的潜在适应性和病理后果。

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