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Fcγ受体与B细胞受体的共聚类诱导Grb2相关结合蛋白1对接蛋白去磷酸化。

Co-clustering of Fcgamma and B cell receptors induces dephosphorylation of the Grb2-associated binder 1 docking protein.

作者信息

Koncz G, Tóth G K, Bökönyi G, Kéri G, Pecht I, Medgyesi D, Gergely J, Sármay G

机构信息

Research Group of the Hungarian Academy of Science at the Department of Immunology, Loránd Eötvös University, Göd, Hungary.

出版信息

Eur J Biochem. 2001 Jul;268(14):3898-906. doi: 10.1046/j.1432-1327.2001.02295.x.

Abstract

The immunoreceptor tyrosine-based inhibitory motif (ITIM) of human type IIb Fcgamma receptor (FcgammaRIIb) is phosphorylated on its tyrosine upon co-clustering with the B cell receptor (BCR). The phosphorylated ITIM (p-ITIM) binds to the SH2 domains of polyphosphoinositol 5-phosphatase (SHIP) and the tyrosine phosphatase, SHP-2. We investigated the involvement of the molecular complex composed of the phosphorylated SHIP and FcgammaRIIb in the activation of SHP-2. As a model compound, we synthesized a bisphosphopeptide, combining the sequences of p-ITIM and the N-terminal tyrosine phosphorylated motif of SHIP with a flexible spacer. This compound bound to the recombinant SH2 domains of SHP-2 with high affinity and activated the phosphatase in an in vitro assay. These data suggest that the phosphorylated FcgammaRII-SHIP complexes formed in the intact cells may also activate SHP-2. Grb2-associated binder 1 (Gab1) is a multisite docking protein, which becomes tyrosine-phosphorylated in response to various types of signaling, including BCR. In turn it binds to the SH2 domains of SHP-2, SHIP and the p85 subunit of phosphatidyl inositol 3-kinase (PtdIns3-K) and may regulate their activity. Gab1 is a potential substrate of SHP-2, thus its binding to FcgammaRIIb may modify the Gab1-bound signaling complex. We show here that Gab1 is part of the multiprotein complex assembled by FcgammaRIIb upon its co-clustering with BCR. Gab1 may recruit SH2 domain-containing molecules to the phosphorylated FcgammaRIIb. SHP-2, activated upon the binding to FcgammaRIIb-SHIP complex, partially dephosphorylates Gab1, resulting in the release of PtdIns3-K and ultimately in the inhibition of downstream activation pathways in BCR/FcgammaRIIb co-aggregated cells.

摘要

人IIb型Fcγ受体(FcγRIIb)的免疫受体酪氨酸抑制基序(ITIM)在与B细胞受体(BCR)共聚集时其酪氨酸会发生磷酸化。磷酸化的ITIM(p-ITIM)与多磷酸肌醇5-磷酸酶(SHIP)和酪氨酸磷酸酶SHP-2的SH2结构域结合。我们研究了由磷酸化的SHIP和FcγRIIb组成的分子复合物在SHP-2激活中的作用。作为模型化合物,我们合成了一种双磷酸肽,将p-ITIM的序列与SHIP的N端酪氨酸磷酸化基序通过柔性间隔区连接起来。该化合物以高亲和力结合到SHP-2的重组SH2结构域,并在体外试验中激活了磷酸酶。这些数据表明,在完整细胞中形成的磷酸化FcγRII-SHIP复合物也可能激活SHP-2。Grb2相关结合蛋白1(Gab1)是一种多位点对接蛋白,在包括BCR在内的各种信号传导响应中会发生酪氨酸磷酸化。反过来,它与SHP-2、SHIP和磷脂酰肌醇3-激酶(PtdIns3-K)的p85亚基的SH2结构域结合,并可能调节它们的活性。Gab1是SHP-2的潜在底物,因此它与FcγRIIb的结合可能会改变与Gab1结合的信号复合物。我们在此表明,Gab1是FcγRIIb与BCR共聚集时组装的多蛋白复合物的一部分。Gab1可能会将含SH2结构域的分子募集到磷酸化的FcγRIIb上。与FcγRIIb-SHIP复合物结合后被激活的SHP-2会使Gab1部分去磷酸化,导致PtdIns3-K释放,最终抑制BCR/FcγRIIb共聚集细胞中的下游激活途径。

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