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FcγRI信号传导中的SLP-76-Cbl-Grb2-Shc相互作用

SLP-76-Cbl-Grb2-Shc interactions in FcgammaRI signaling.

作者信息

Chu J, Liu Y, Koretzky G A, Durden D L

机构信息

Neil Bogart Memorial Laboratories, Division of Hematology-Oncology, Childrens Hospital Los Angeles, Los Angeles, CA, USA.

出版信息

Blood. 1998 Sep 1;92(5):1697-706.

PMID:9716598
Abstract

SLP-76 and Cbl are complex adapter proteins that have the capacity to bind to smaller adapter proteins, such as Grb2, which subsequently binds the nucleotide exchange protein Sos in the transmission of intracellular signals. SLP-76, Cbl, Shc, and Grb2 have been implicated in immunoreceptor tyrosine-based activation motif (ITAM) signaling, leading to activation of Ras. However, their mechanism of action has not been determined. To date, there have been no reports of SLP-76 involvement in FcgammaRI-receptor signaling and no data exist for an interaction between Cbl, Shc, and SLP-76 in vivo. We provide evidence that SLP-76, Cbl, and Shc are tyrosine phosphorylated on FcgammaRI-receptor stimulation and are associated with the adapter protein Grb2 in gamma-interferon-differentiated U937 cells (U937IF). The interactions between SLP-76 and Cbl and SLP-76 and Grb2 are present in resting U937IF cells. However, the interaction between SLP-76 and Grb2 becomes augmented twofold on FcgammaRI-receptor aggregation. Our results provide the first evidence for a phosphorylation-dependent interaction between SLP-76 and Shc, induced at least 10-fold on FcgammaRI receptor stimulation. Our data indicate that a significant portion of a multimolecular complex containing Cbl, SLP-76, Shc, and Grb2 is distinct from a trimolecular complex containing the Ras guanine nucleotide exchanger Sos, Shc, and Grb2. FcgammaRI-induced tyrosine phosphorylation of SLP-76, Cbl, Shc, and the highly induced SLP-76-Shc interaction provide the first evidence that SLP-76 and Cbl are involved in FcgammaRI signaling and suggest a functional significance for these interactions in FcgammaRI signal relay in the control of Ras in myeloid cells.

摘要

SLP - 76和Cbl是复杂的衔接蛋白,它们能够结合较小的衔接蛋白,如Grb2,而Grb2随后在细胞内信号传导过程中结合核苷酸交换蛋白Sos。SLP - 76、Cbl、Shc和Grb2已被证明参与基于免疫受体酪氨酸的激活基序(ITAM)信号传导,从而导致Ras激活。然而,它们的作用机制尚未确定。迄今为止,尚无关于SLP - 76参与FcγRI受体信号传导的报道,也没有体内Cbl、Shc和SLP - 76之间相互作用的数据。我们提供证据表明,在FcγRI受体刺激下,SLP - 76、Cbl和Shc发生酪氨酸磷酸化,并在γ - 干扰素分化的U937细胞(U937IF)中与衔接蛋白Grb2相关联。SLP - 76与Cbl以及SLP - 76与Grb2之间的相互作用存在于静息的U937IF细胞中。然而,在FcγRI受体聚集时,SLP - 76与Grb2之间的相互作用增强了两倍。我们的结果首次证明了SLP - 76与Shc之间存在磷酸化依赖性相互作用,在FcγRI受体刺激下这种相互作用至少增强了10倍。我们的数据表明,包含Cbl、SLP - 76、Shc和Grb2的多分子复合物的很大一部分不同于包含Ras鸟嘌呤核苷酸交换因子Sos、Shc和Grb2的三分子复合物。FcγRI诱导的SLP - 76、Cbl、Shc的酪氨酸磷酸化以及高度诱导的SLP - 76 - Shc相互作用首次证明SLP - 76和Cbl参与FcγRI信号传导,并表明这些相互作用在髓系细胞中控制Ras的FcγRI信号转导中具有功能意义。

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