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Shb 支架结合了 Nck 衔接蛋白、p120 RasGAP 和 Chimaerins,从而促进了受体 EphB2 的异型细胞分离。

The Shb scaffold binds the Nck adaptor protein, p120 RasGAP, and Chimaerins and thereby facilitates heterotypic cell segregation by the receptor EphB2.

机构信息

Princess Margaret Cancer Centre, University Health Network, Toronto, Ontario M5S 1A8, Canada

Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, Toronto, Ontario M5G 1X5, Canada.

出版信息

J Biol Chem. 2020 Mar 20;295(12):3932-3944. doi: 10.1074/jbc.RA119.009276. Epub 2020 Feb 14.

Abstract

Eph receptors are a family of receptor tyrosine kinases that control directional cell movement during various biological processes, including embryogenesis, neuronal pathfinding, and tumor formation. The biochemical pathways of Eph receptors are context-dependent in part because of the varied composition of a heterotypic, oligomeric, active Eph receptor complex. Downstream of the Eph receptors, little is known about the essential phosphorylation events that define the context and instruct cell movement. Here, we define a pathway that is required for Eph receptor B2 (EphB2)-mediated cell sorting and is conserved among multiple Eph receptors. Utilizing a HEK293 model of EphB2/ephrinB1 cell segregation, we found that the scaffold adaptor protein SH2 domain-containing adaptor protein B (Shb) is essential for EphB2 functionality. Further characterization revealed that Shb interacts with known modulators of cytoskeletal rearrangement and cell mobility, including Nck adaptor protein (Nck), p120-Ras GTPase-activating protein (RasGAP), and the α- and β-Chimaerin Rac GAPs. We noted that phosphorylation of Tyr, Tyr, and Tyr of Shb is required for EphB2-ephrinB1 boundary formation, as well as binding of Nck, RasGAP, and the chimaerins, respectively. Similar complexes were formed in the context of EphA4, EphA8, EphB2, and EphB4 receptor activation. These results indicate that phosphotyrosine-mediated signaling through Shb is essential in EphB2-mediated heterotypic cell segregation and suggest a conserved function for Shb downstream of multiple Eph receptors.

摘要

Eph 受体是一类受体酪氨酸激酶,它们在各种生物学过程中控制着细胞的定向运动,包括胚胎发生、神经元导向和肿瘤形成。Eph 受体的生化途径在一定程度上是依赖于上下文的,这部分是由于异质寡聚、活性 Eph 受体复合物的组成不同。在 Eph 受体的下游,对于定义上下文并指导细胞运动的必需磷酸化事件知之甚少。在这里,我们定义了一条途径,该途径是 Eph 受体 B2(EphB2)介导的细胞分选所必需的,并且在多种 Eph 受体中保守。利用 EphB2/ephrinB1 细胞分离的 HEK293 模型,我们发现支架衔接蛋白 SH2 结构域包含衔接蛋白 B(Shb)对于 EphB2 的功能是必需的。进一步的表征表明,Shb 与已知的细胞骨架重排和细胞迁移调节剂相互作用,包括 Nck 衔接蛋白(Nck)、p120-Ras GTP 酶激活蛋白(RasGAP)和α-和β-Chimaerin Rac GAPs。我们注意到,Shb 的 Tyr、Tyr 和 Tyr 磷酸化对于 EphB2-ephrinB1 边界形成以及 Nck、RasGAP 和 Chimaerin 的结合分别是必需的。在 EphA4、EphA8、EphB2 和 EphB4 受体激活的情况下,也形成了类似的复合物。这些结果表明,通过 Shb 的磷酸酪氨酸介导的信号对于 EphB2 介导的异型细胞分选是必需的,并表明 Shb 在多种 Eph 受体下游具有保守的功能。

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