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CD4与跨膜4超家族的两个成员CD81和CD82关联的分子分析。

Molecular analyses of the association of CD4 with two members of the transmembrane 4 superfamily, CD81 and CD82.

作者信息

Imai T, Kakizaki M, Nishimura M, Yoshie O

机构信息

Shionogi Institute for Medical Science, Osaka, Japan.

出版信息

J Immunol. 1995 Aug 1;155(3):1229-39.

PMID:7636191
Abstract

Previously, we have shown that CD81 and CD82, two members of the transmembrane 4 superfamily, form multimolecular membrane complexes by associating with each other and with CD4 or CD8 in T cells. In the present study, we further analyzed the molecular basis of the CD4 association with CD81 and CD82 by co-precipitation experiments. First, we examined the regions of CD4 involved in the association with CD81 and CD82 by employing chimeric proteins generated from CD4 and CD2. It was confirmed that CD4, but not CD2, was capable of binding with CD81 and CD82 in transfected cells. We found that the cytoplasmic region of CD4 was sufficient for the chimeric proteins to co-precipitate CD81, while both the cytoplasmic and extracellular regions of CD4 were required for them to efficiently co-precipitate CD82. We next found, by using truncated CD4 lacking the C-terminal 31 amino acids or mutated CD4 with the cysteine residues at 394 and 397 replaced by serine, that the p56lck binding site or the covalent modification with palmitic acid was not necessary for CD4 to associate with CD81 and CD82. Finally, we found that the binding of p56lck to CD4 strongly inhibited its association with CD81 and CD82. It is, therefore, suggested that CD4 exists at least in two physical states, one associated with p56lck and another associated with CD81 and CD82 in the absence or uncoupling of p56lck.

摘要

此前,我们已经表明,跨膜4超家族的两个成员CD81和CD82通过在T细胞中相互结合以及与CD4或CD8结合形成多分子膜复合物。在本研究中,我们通过共沉淀实验进一步分析了CD4与CD81和CD82结合的分子基础。首先,我们通过使用由CD4和CD2产生的嵌合蛋白来研究CD4中参与与CD81和CD82结合的区域。已证实,在转染细胞中,CD4而非CD2能够与CD81和CD82结合。我们发现,对于嵌合蛋白共沉淀CD81而言,CD4的胞质区就足够了,而对于它们有效共沉淀CD82而言,则需要CD4的胞质区和胞外区。接下来,我们通过使用缺失C末端31个氨基酸的截短型CD4或用丝氨酸取代394和397位半胱氨酸残基的突变型CD4发现,CD4与CD81和CD82结合并不需要p56lck结合位点或棕榈酸的共价修饰。最后,我们发现p56lck与CD4的结合强烈抑制了其与CD81和CD82的结合。因此,提示CD4至少以两种物理状态存在,一种与p56lck结合,另一种在没有p56lck或p56lck解偶联的情况下与CD81和CD82结合。

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