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首页> 外文期刊>Molecular biology of the cell >Two pairs of conserved cysteines are required for the oxidative activity of Ero1p in protein disulfide bond formation in the endoplasmic reticulum
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Two pairs of conserved cysteines are required for the oxidative activity of Ero1p in protein disulfide bond formation in the endoplasmic reticulum

机译:Ero1p在内质网中蛋白质二硫键形成中的氧化活性需要两对保守的半胱氨酸

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摘要

In the major pathway for protein disulfide-bond formation in the endoplasmic reticulum (ER), oxidizing equivalents flow from the conserved ER-membrane protein Ero1p to secretory proteins via protein disulfide isomerase (PDI). Herein, a mutational analysis of the yeast ERO1 gene identifies two pairs of conserved cysteines likely to form redox-active disulfide bonds in Ero1p. Cys100, Cys105, Cys352, and Cys355 of Ero1p are important for oxidative protein folding and for cell viability, whereas Cys90, Cys208, and Cys349 are dispensable for these functions. Substitution of Cys100 with alanine impedes the capture of Ero1p-Pdi1p mixed-disulfide complexes from yeast, and also blocks oxidation of Pdi1p in vivo. Cys352 and Cys355 are required to maintain the fully oxidized redox state of Ero1p, and also play an auxiliary role in thiol-disulfide exchange with Pdi1p. These results suggest a model for the function of Ero1p wherein Cys100 and Cys105 form a redox-active disulfide bond that engages directly in thiol-disulfide exchange with ER oxidoreductases. The Cys352-Cys355 disulfide could then serve to reoxidize the Cys100-Cys105 cysteine Fair, possibly through an intramolecular thiol-disulfide exchange reaction. [References: 42]
机译:在内质网(ER)中蛋白质二硫键形成的主要途径中,氧化等价物通过保守的ER膜蛋白Ero1p经由蛋白二硫键异构酶(PDI)流向分泌蛋白。本文中,酵母ERO1基因的突变分析确定了两对保守的半胱氨酸,它们很可能在Ero1p中形成氧化还原活性的二硫键。 Ero1p的Cys100,Cys105,Cys352和Cys355对于氧化蛋白折叠和细胞活力很重要,而Cys90,Cys208和Cys349对于这些功能却是必需的。用丙氨酸替代Cys100会阻止从酵母中捕获Ero1p-Pdi1p混合二硫化物复合物,并在体内阻止Pdi1p的氧化。需要Cys352和Cys355来维持Ero1p的完全氧化还原状态,并在与Pdi1p的硫醇-二硫键交换中起辅助作用。这些结果表明了Ero1p功能的模型,其中Cys100和Cys105形成氧化还原活性二硫键,直接与ER氧化还原酶进行巯基-二硫键交换。然后,Cys352-Cys355二硫键可能通过分子内硫醇-二硫键交换反应重新氧化Cys100-Cys105半胱氨酸Fair。 [参考:42]

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