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Src 家族酪氨酸激酶的非催化功能控制催乳素诱导的 Jak2 信号转导。

A non-catalytic function of the Src family tyrosine kinases controls prolactin-induced Jak2 signaling.

机构信息

Instituto de Investigaciones Biomédicas A. Sols (CSIC/UAM), Arturo Duperier 4, 28029 Madrid, Spain.

出版信息

Cell Signal. 2010 Mar;22(3):415-26. doi: 10.1016/j.cellsig.2009.10.013.

Abstract

The cytokine prolactin (PRL) plays important roles in the proliferation and differentiation of the mammary gland and it has been implicated in tumorigenesis. The prolactin receptor (PRLR) is devoid of catalytic activity and its mitogenic response is controlled by cytoplasmic tyrosine kinases of the Src (SFK) and Jak families. How PRLR uses these kinases for signaling is not well understood. Previous studies indicated that PRLR-induced Jak2 activation does not require SFK catalytic activity in favor of separate signaling operating on this cellular response. Here we show that, nevertheless, PRLR requires Src-SH2 and -SH3 domains for Jak2 signaling. In W53 lymphoid cells, conditional expression of two c-Src non-catalytic mutants, either SrcK295M/Y527F or SrcK, whose SH3 and SH2 domains are exposed, controls Jak2/Stat5 activation by recruiting Jak2, avoiding its activation by endogenous active SFK. In contrast, the kinase inactive SrcK295M mutant, with inaccessible SH3 and SH2 domains, does not. Furthermore, all three mutants attenuate PRLR-induced Akt and p70S6K activation. Accordingly, PRLR-induced Jak2/Stat5 signaling is inhibited in MCF7 breast cancer cells by Src depletion, expression of SrcK295M/Y527F or active Src harboring an inactive SH2 (SrcR175L) or SH3 domain (SrcW118A). Finally, Jak2/Stat5 pathway is also reduced in Src-/- mice mammary glands. We thus conclude that, in addition to Akt and p70S6K, SFK regulate PRLR-induced Jak2 signaling through a kinase-independent mechanism.

摘要

细胞因子催乳素(PRL)在乳腺的增殖和分化中发挥重要作用,并且与肿瘤发生有关。催乳素受体(PRLR)缺乏催化活性,其有丝分裂反应受Src(SFK)和 Jak 家族的细胞质酪氨酸激酶控制。PRLR 如何利用这些激酶进行信号转导还不是很清楚。先前的研究表明,PRLR 诱导的 Jak2 激活不需要 SFK 的催化活性,而是有利于在这种细胞反应中独立运作的信号转导。在这里,我们表明,尽管如此,PRLR 还是需要Src-SH2 和 -SH3 结构域来进行 Jak2 信号转导。在 W53 淋巴细胞中,两种非催化型 c-Src 突变体(SrcK295M/Y527F 或 SrcK)的条件表达,其 SH3 和 SH2 结构域暴露,通过招募 Jak2 来控制 Jak2/Stat5 的激活,从而避免其被内源性活性 SFK 激活。相比之下,激酶失活的 SrcK295M 突变体,其 SH3 和 SH2 结构域不可用,则不行。此外,所有三种突变体都减弱了 PRLR 诱导的 Akt 和 p70S6K 的激活。因此,Src 耗竭、表达 SrcK295M/Y527F 或含有失活 SH2(SrcR175L)或 SH3 结构域(SrcW118A)的活性 Src 会抑制 MCF7 乳腺癌细胞中 PRLR 诱导的 Jak2/Stat5 信号转导。最后,Src-/-小鼠乳腺中的 Jak2/Stat5 通路也减少了。因此,我们得出结论,除了 Akt 和 p70S6K 之外,SFK 还通过一种非激酶依赖的机制调节 PRLR 诱导的 Jak2 信号转导。

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