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排除CD45会抑制与富含糖脂的膜结构域相关的p56lck的活性。

Exclusion of CD45 inhibits activity of p56lck associated with glycolipid-enriched membrane domains.

作者信息

Rodgers W, Rose J K

机构信息

Department of Pathology, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

J Cell Biol. 1996 Dec;135(6 Pt 1):1515-23. doi: 10.1083/jcb.135.6.1515.

Abstract

p56lck (Lck) is a lymphoid-specific Src family tyrosine kinase that is critical for T-cell development and activation. Lck is also a membrane protein, and approximately half of the membrane-associated Lck is associated with a glycolipid-enriched membrane (GEM) fraction that is resistant to solubilization by Triton X-100 (TX-100). To compare the membrane-associated Lck present in the GEM and TX-100-soluble fractions of Jurkat cells, Lck from each fraction was immunoblotted with antibody to phosphotyrosine. Lck in the GEM fraction was found to be hyperphosphorylated on tyrosine, and this correlated with a lower kinase specific activity relative to the TX-100-soluble Lck. Peptide mapping and phosphatase diagests showed that the hyperphosphorylation and lower kinase activity of GEM-associated Lck was due to phosphorylation of the regulatory COOH-terminal Tyr505. In addition, we determined that the membrane-bound tyrosine phosphatase CD45 was absent from the GEM fraction. Cells lacking CD45 showed identical phosphorylation of Lck in GEM and TX-100-soluble membranes. We propose that the GEM fraction represents a specific membrane domain present in T-cells, and that the hyperphosphorylation of tyrosine and lower kinase activity of GEM-associated Lck is due to exclusion of CD45 from these domains. Lck associated with the GEM domains may therefore consitute a reservoir of enzyme that can be readily activated.

摘要

p56lck(Lck)是一种淋巴细胞特异性Src家族酪氨酸激酶,对T细胞的发育和激活至关重要。Lck也是一种膜蛋白,大约一半与膜相关的Lck与富含糖脂的膜(GEM)部分相关,该部分对Triton X-100(TX-100)的溶解具有抗性。为了比较Jurkat细胞的GEM和TX-100可溶部分中存在的与膜相关的Lck,用抗磷酸酪氨酸抗体对每个部分的Lck进行免疫印迹分析。发现GEM部分中的Lck在酪氨酸上高度磷酸化,这与相对于TX-100可溶Lck较低的激酶比活性相关。肽图谱分析和磷酸酶消化表明,与GEM相关的Lck的高度磷酸化和较低的激酶活性是由于调节性COOH末端Tyr505的磷酸化。此外,我们确定GEM部分中不存在膜结合的酪氨酸磷酸酶CD45。缺乏CD45的细胞在GEM和TX-100可溶膜中显示出相同的Lck磷酸化。我们提出GEM部分代表T细胞中存在的特定膜结构域,并且与GEM相关的Lck的酪氨酸高度磷酸化和较低的激酶活性是由于CD45被排除在这些结构域之外。因此,与GEM结构域相关的Lck可能构成一种易于激活的酶库。

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