Chen W, Helenius J, Braakman I, Helenius A
Department of Cell Biology, Yale School of Medicine, New Haven, CT 06510-8002, USA.
Proc Natl Acad Sci U S A. 1995 Jul 3;92(14):6229-33. doi: 10.1073/pnas.92.14.6229.
To analyze cotranslational folding of influenza hemagglutinin in the endoplasmic reticulum of live cells, we used short pulses of radiolabeling followed by immunoprecipitation and analysis with a two-dimensional SDS/polyacrylamide gel system which was nonreducing in the first dimension and reducing in the second. It separated nascent glycopolypeptides of different length and oxidation state. Evidence was obtained for cotranslational disulfide formation, generation of conformational epitopes, N-linked glycosylation, and oligosaccharide-dependent binding of calnexin, a membrane-bound chaperone that binds to incompletely folded glycoproteins via partially glucose-trimmed oligosaccharides. When glycosylation or oligosaccharide trimming was inhibited, the folding pathway was perturbed, suggesting a role for N-linked oligosaccharides and calnexin during translation of hemagglutinin.
为了分析活细胞内质网中流感血凝素的共翻译折叠过程,我们采用了放射性标记短脉冲,随后进行免疫沉淀,并使用二维SDS/聚丙烯酰胺凝胶系统进行分析,该系统在第一维是非还原的,在第二维是还原的。它分离了不同长度和氧化状态的新生糖多肽。获得的证据表明存在共翻译二硫键形成、构象表位的产生、N-连接糖基化以及钙连蛋白(一种膜结合伴侣蛋白,通过部分葡萄糖修剪的寡糖与未完全折叠的糖蛋白结合)的寡糖依赖性结合。当糖基化或寡糖修剪受到抑制时,折叠途径受到干扰,这表明N-连接寡糖和钙连蛋白在血凝素翻译过程中发挥作用。