Segal M S, Bye J M, Sambrook J F, Gething M J
Department of Biochemistry, University of Texas Southwestern Medical Center, Dallas 75235.
J Cell Biol. 1992 Jul;118(2):227-44. doi: 10.1083/jcb.118.2.227.
To study the importance of individual sulfhydryl residues during the folding and assembly in vivo of influenza virus hemagglutinin (HA), we have constructed and expressed a series of mutant HA proteins in which cysteines involved in three disulfide bonds have been substituted by serine residues. Investigations of the structure and intracellular transport of the mutant proteins indicate that (a) cysteine residues in the ectodomain are essential both for efficient folding of HA and for stabilization of the folded molecule; (b) cysteine residues in the globular portion of the ectodomain are likely to form native disulfide bonds rapidly and directly, without involvement of intermediate, nonnative linkages; and (c) cysteine residues in the stalk portion of the ectodomain also appear not to form intermediate disulfide bonds, even though they have the opportunity to do so, being separated from their correct partners by hundreds of amino acids including two or more other sulfhydryl residues. We propose a role for the cellular protein BiP in shielding the cysteine residues of the stalk domain during the folding process, thus preventing them from forming intermediate, nonnative disulfide bonds.
为了研究单个巯基残基在流感病毒血凝素(HA)体内折叠和组装过程中的重要性,我们构建并表达了一系列突变HA蛋白,其中参与三个二硫键的半胱氨酸已被丝氨酸残基取代。对突变蛋白的结构和细胞内运输的研究表明:(a)胞外域中的半胱氨酸残基对于HA的有效折叠和折叠分子的稳定都是必不可少的;(b)胞外域球状部分中的半胱氨酸残基可能迅速且直接地形成天然二硫键,而不涉及中间的非天然连接;(c)胞外域茎部的半胱氨酸残基似乎也不会形成中间二硫键,尽管它们有机会这样做,因为它们与正确的配对残基被数百个氨基酸隔开,其中包括两个或更多其他巯基残基。我们提出细胞蛋白BiP在折叠过程中对茎域半胱氨酸残基具有屏蔽作用,从而防止它们形成中间的非天然二硫键。