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Dok-3隔离Grb2并抑制蛋白酪氨酸激酶下游的Ras-Erk信号通路。

Dok-3 sequesters Grb2 and inhibits the Ras-Erk pathway downstream of protein-tyrosine kinases.

作者信息

Honma Miyuki, Higuchi Osamu, Shirakata Masaki, Yasuda Tomoharu, Shibuya Hiroshi, Iemura Shun-ichiro, Natsume Tohru, Yamanashi Yuji

机构信息

Department of Cell Regulation, Medical Research Institute, Tokyo Medical and Dental University, Tokyo 113-8510, Japan.

出版信息

Genes Cells. 2006 Feb;11(2):143-51. doi: 10.1111/j.1365-2443.2006.00926.x.

Abstract

Adaptor proteins are essential in coordinating recruitment and, in a few cases, restraint of various effectors during cellular signaling. Dok-1, Dok-2 and Dok-3 comprise a closely related family of adaptor, which negatively regulates mitogen-activated protein kinase Erk downstream of protein-tyrosine kinases (PTKs). Recruitment of p120 rasGAP, a potent inhibitor of Ras, by Dok-1 and Dok-2 appears critical in the negative regulation of the Ras-Erk pathway. However, as Dok-3 does not bind rasGAP, it has been unclear how Dok-3 inhibits Erk downstream of PTKs. Here, we identified Grb2 as a Dok-3-binding protein upon its tyrosine phosphorylation. This interaction required the intact binding motifs of the Grb2 SH2 domain, and a mutant (Dok-3-FF) having a Tyr/Phe substitution at these motifs failed to inhibit Ras and Erk activation downstream of a cytoplasmic PTK Src. Because Grb2 forms a stable complex with Sos, a crucial activator of Ras, these data suggest that Dok-3 restrains Grb2 and inhibits the ability of the Grb2-Sos complex to activate Ras. Indeed, forced expression of Dok-3, but not Dok-3-FF, inhibited the recruitment of the Grb2-Sos complex to Shc downstream of Src, which is an essential event for activation of the Ras-Erk pathway. These findings indicate that Dok-3 sequesters Grb2 from Shc and inhibits the Ras-Erk pathway downstream of PTKs.

摘要

衔接蛋白在细胞信号传导过程中协调各种效应器的募集,在少数情况下还起到抑制作用,这一点至关重要。Dok-1、Dok-2和Dok-3构成了一个紧密相关的衔接蛋白家族,它们在蛋白酪氨酸激酶(PTK)下游对丝裂原活化蛋白激酶Erk起负调节作用。Dok-1和Dok-2募集p120 rasGAP(一种有效的Ras抑制剂)似乎在Ras-Erk途径的负调节中起关键作用。然而,由于Dok-3不与rasGAP结合,其如何在PTK下游抑制Erk尚不清楚。在此,我们鉴定出Grb2是Dok-3酪氨酸磷酸化后的结合蛋白。这种相互作用需要Grb2 SH2结构域完整的结合基序,在这些基序处具有酪氨酸/苯丙氨酸替代的突变体(Dok-3-FF)无法抑制细胞质PTK Src下游的Ras和Erk激活。由于Grb2与Ras的关键激活剂Sos形成稳定复合物,这些数据表明Dok-3抑制Grb2并抑制Grb2-Sos复合物激活Ras的能力。实际上,强制表达Dok-3而非Dok-3-FF可抑制Grb2-Sos复合物向Src下游的Shc募集,这是激活Ras-Erk途径的一个关键事件。这些发现表明Dok-3将Grb2从Shc中隔离出来,并抑制PTK下游的Ras-Erk途径。

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