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Gads/Grb2介导的与LAT的结合对于Gab2在T细胞中的抑制功能至关重要。

Gads/Grb2-mediated association with LAT is critical for the inhibitory function of Gab2 in T cells.

作者信息

Yamasaki Sho, Nishida Keigo, Sakuma Machie, Berry Donna, McGlade C Jane, Hirano Toshio, Saito Takashi

机构信息

Department of Molecular Genetics, Graduate School of Medicine, Chiba University, Chuo-ku, Chiba 260-8670, Japan.

出版信息

Mol Cell Biol. 2003 Apr;23(7):2515-29. doi: 10.1128/MCB.23.7.2515-2529.2003.

Abstract

A docking protein, Gab2, is recruited to the vicinity of the TCR complex and inhibits downstream signaling by interaction with negative regulators. However, the molecular mechanisms of this recruitment remain unclear. We have found that Gab2 associates with LAT upon TCR stimulation and that LAT is essential for Gab2 phosphorylation. By analysis of several Gab2 mutants, the c-Met binding domain (MBD) of Gab2 was found to be both necessary and sufficient for stimulation-induced LAT binding. Within the MBD domain, a novel Grb2 SH3 binding motif, PXXXR, is critical for constitutive association with Gads/Grb2. Through this association, Gab2 is recruited to the lipid raft after TCR ligation and exerts inhibitory function. The in vivo significance of this association is illustrated by the fact that T-cell responses are impaired in transgenic mice expressing wild-type Gab2 but not in mice expressing mutant Gab2 lacking the motif. Furthermore, T cells from Gab2-deficient mice showed enhanced proliferative responses upon TCR stimulation. These results indicate that Gads/Grb2-mediated LAT association is critical for the inhibitory function of Gab2, implying that Gab2 induced in stimulated T cells may exert an efficient negative feedback loop by recruiting inhibitory molecules to the lipid raft and competing with SLP-76 through Gads binding.

摘要

一种对接蛋白Gab2被招募到TCR复合物附近,并通过与负性调节因子相互作用来抑制下游信号传导。然而,这种招募的分子机制仍不清楚。我们发现,TCR刺激后Gab2与LAT结合,且LAT对Gab2磷酸化至关重要。通过对几种Gab2突变体的分析,发现Gab2的c-Met结合域(MBD)对于刺激诱导的LAT结合既必要又充分。在MBD结构域内,一个新的Grb2 SH3结合基序PXXXR对于与Gads/Grb2的组成型结合至关重要。通过这种结合,TCR连接后Gab2被招募到脂筏并发挥抑制功能。这种结合在体内的重要性体现在以下事实上:表达野生型Gab2的转基因小鼠的T细胞反应受损,而表达缺乏该基序的突变型Gab2的小鼠则没有。此外,来自Gab2缺陷小鼠的T细胞在TCR刺激后显示出增强的增殖反应。这些结果表明,Gads/Grb2介导的LAT结合对于Gab2的抑制功能至关重要,这意味着在受刺激的T细胞中诱导产生的Gab2可能通过将抑制分子招募到脂筏并通过Gads结合与SLP-76竞争来发挥有效的负反馈回路作用。

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