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Only Five of 10 Strictly Conserved Disulfide Bonds Are Essential for Folding and Eight for Function of the HIV-1 Envelope Glycoprotein

机译:10个严格保守的二硫键中只有5个对于折叠至关重要而8个对于HIV-1信封糖蛋白的功能至关重要

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摘要

Protein folding in the endoplasmic reticulum goes hand in hand with disulfide bond formation, and disulfide bonds are considered key structural elements for a protein's folding and function. We used the HIV-1 Envelope glycoprotein to examine in detail the importance of its 10 completely conserved disulfide bonds. We systematically mutated the cysteines in its ectodomain, assayed the mutants for oxidative folding, transport, and incorporation into the virus, and tested fitness of mutant viruses. We found that the protein was remarkably tolerant toward manipulation of its disulfide-bonded structure. Five of 10 disulfide bonds were dispensable for folding. Two of these were even expendable for viral replication in cell culture, indicating that the relevance of these disulfide bonds becomes manifest only during natural infection. Our findings refine old paradigms on the importance of disulfide bonds for proteins.
机译:内质网中的蛋白质折叠与二硫键的形成紧密相关,二硫键被认为是蛋白质折叠和功能的关键结构要素。我们使用HIV-1信封糖蛋白来详细检查其10个完全保守的二硫键的重要性。我们系统地突变了其胞外域中的半胱氨酸,分析了突变体的氧化折叠,转运和掺入病毒,并测试了突变病毒的适用性。我们发现该蛋白质对其二硫键结构的操纵具有显着的耐受性。 10个二硫键中的5个对于折叠而言是可有可无的。这些中的两个甚至在细胞培养中对于病毒复制而言是消耗性的,表明这些二硫键的相关性仅在自然感染期间才变得明显。我们的发现完善了关于蛋白质中二硫键重要性的旧范式。

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