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Socs1与多种信号蛋白结合,并抑制Steel因子依赖性增殖。

Socs1 binds to multiple signalling proteins and suppresses steel factor-dependent proliferation.

作者信息

De Sepulveda P, Okkenhaug K, Rose J L, Hawley R G, Dubreuil P, Rottapel R

机构信息

Ontario Cancer Institute, Princess Margaret Hospital, 610 University Avenue, Toronto M5G 2M9.

出版信息

EMBO J. 1999 Feb 15;18(4):904-15. doi: 10.1093/emboj/18.4.904.

Abstract

We have identified Socs1 as a downstream component of the Kit receptor tyrosine kinase signalling pathway. We show that the expression of Socs1 mRNA is rapidly increased in primary bone marrow-derived mast cells following exposure to Steel factor, and Socs1 inducibly binds to the Kit receptor tyrosine kinase via its Src homology 2 (SH2) domain. Previous studies have shown that Socs1 suppresses cytokine-mediated differentiation in M1 cells inhibiting Janus family kinases. In contrast, constitutive expression of Socs1 suppresses the mitogenic potential of Kit while maintaining Steel factor-dependent cell survival signals. Unlike Janus kinases, Socs1 does not inhibit the catalytic activity of the Kit tyrosine kinase. In order to define the mechanism by which Socs1-mediated suppression of Kit-dependent mitogenesis occurs, we demonstrate that Socs1 binds to the signalling proteins Grb-2 and the Rho-family guanine nucleotide exchange factors Vav. We show that Grb2 binds Socs1 via its SH3 domains to putative diproline determinants located in the N-terminus of Socs1, and Socs1 binds to the N-terminal regulatory region of Vav. These data suggest that Socs1 is an inducible switch which modulates proliferative signals in favour of cell survival signals and functions as an adaptor protein in receptor tyrosine kinase signalling pathways.

摘要

我们已确定细胞因子信号转导抑制因子1(Socs1)是Kit受体酪氨酸激酶信号通路的下游组成部分。我们发现,原代骨髓来源的肥大细胞在暴露于Steel因子后,Socs1 mRNA的表达迅速增加,并且Socs1通过其Src同源2(SH2)结构域可诱导性地与Kit受体酪氨酸激酶结合。先前的研究表明,Socs1在M1细胞中抑制Janus家族激酶,从而抑制细胞因子介导的分化。相比之下,Socs1的组成型表达在维持Steel因子依赖性细胞存活信号的同时,抑制了Kit的促有丝分裂潜能。与Janus激酶不同,Socs1并不抑制Kit酪氨酸激酶的催化活性。为了确定Socs1介导的对Kit依赖性有丝分裂发生抑制作用的机制,我们证明Socs1与信号蛋白Grb-2以及Rho家族鸟嘌呤核苷酸交换因子Vav结合。我们发现,Grb2通过其SH3结构域与位于Socs1 N端的假定双脯氨酸决定簇结合Socs1,并且Socs1与Vav的N端调节区域结合。这些数据表明,Socs1是一个可诱导的开关,它调节增殖信号以利于细胞存活信号,并在受体酪氨酸激酶信号通路中作为衔接蛋白发挥作用。

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