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人γ链在细胞内运输过程中与Ⅱ类移植抗原的关联。

Association of human gamma chain with class II transplantation antigens during intracellular transport.

作者信息

Claesson L, Peterson P A

出版信息

Biochemistry. 1983 Jun 21;22(13):3206-13. doi: 10.1021/bi00282a026.

Abstract

Cell surface expressed human and murine class II transplantation antigens are composed of two polypeptide chains called alpha and beta. During intracellular transport an invariant chain, provisionally called gamma, is associated with the class II antigen chains. Since gamma chains leave the endoplasmic reticulum only when associated with alpha and beta chains, we have studied the intracellular transport of the gamma chain and its possible cell surface expression. Modifications of the carbohydrate moieties of the gamma chain during intracellular transport were also examined. The gamma chain appears to contain two Asn-linked carbohydrate moieties and maybe also one or more Ser/Thr-linked carbohydrates. At all times during the pulse-chase experiments core glycosylated gamma chains resolved into two distinct spots on two-dimensional gel electrophoresis. The occurrence of core-glycosylated gamma chains was expected since more gamma chains than alpha and beta chains exist in the endoplasmic reticulum. Terminally glycosylated, alpha, beta, and gamma chains emerged simultaneously supporting the idea that the three types of chains are brought to the Golgi complex bound to each other. However, terminal glycosylation is temporally related to the dissociation of the gamma chain from the alpha and beta chains. Since isolated plasma membranes contained molecules indistinguishable from gamma chains, it is concluded that gamma chains are transported together with class II antigens from the endoplasmic reticulum to the Golgi complex. After dissociation, class II antigens and some, if not all, gamma chains seem to become independently integrated into the plasma membrane.

摘要

细胞表面表达的人类和鼠类II类移植抗原由两条称为α链和β链的多肽链组成。在细胞内运输过程中,一条暂时称为γ链的恒定链与II类抗原链相关联。由于γ链只有在与α链和β链结合时才离开内质网,我们研究了γ链的细胞内运输及其可能的细胞表面表达。我们还研究了细胞内运输过程中γ链碳水化合物部分的修饰情况。γ链似乎含有两个天冬酰胺连接的碳水化合物部分,也可能含有一个或多个丝氨酸/苏氨酸连接的碳水化合物。在脉冲追踪实验的所有时间里,核心糖基化的γ链在二维凝胶电泳上都分离成两个不同的斑点。核心糖基化γ链的出现是可以预料的,因为内质网中γ链的数量比α链和β链多。末端糖基化的α链、β链和γ链同时出现,这支持了三种类型的链相互结合被带到高尔基体复合体的观点。然而,末端糖基化在时间上与γ链从α链和β链上的解离有关。由于分离的质膜含有与γ链无法区分的分子,因此可以得出结论,γ链与II类抗原一起从内质网运输到高尔基体复合体。解离后,II类抗原和一些(如果不是全部)γ链似乎独立整合到质膜中。

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