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EphA4 Signaling Regulates Blastomere Adhesion in the Xenopus Embryo by Recruiting Pak1 to Suppress Cdc42 Function

机译:EphA4信号传导通过招募Pak1抑制Cdc42功能来调节非洲爪蟾胚胎中的卵裂球粘附。

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The control of cell adhesion is an important mechanism by which Eph receptors regulate cell sorting during development. Activation of EphA4 in Xenopus blastulae induces a reversible, cell autonomous loss-of-adhesion and disruption of the blastocoel roof. We show this phenotype is rescued by Nckβ (Grb4) dependent on its interaction with EphA4. Xenopus p21Cdc42/Rac-activated kinase xPAK1 interacts with Nck, is activated in embryo by EphA4 in an Nck-dependent manner, and is required for EphA4-induced loss-of-adhesion. Ectopic expression of xPAK1 phenocopies EphA4 activation. This does not require the catalytic activity of xPAK1, but it does require its GTPase binding domain and is enhanced by membrane targeting. Indeed, membrane targeting of the GTPase binding domain (GBD) of xPAK1 alone is sufficient to phenocopy EphA4 loss-of-adhesion. Both EphA4 and the xPAK1-GBD down-regulate RhoA-GTP levels, and consistent with this, loss-of-adhesion can be rescued by activated Cdc42, Rac, and RhoA and can be epistatically induced by dominant-negative RhoA. Despite this, neither Cdc42 nor Rac activities are down-regulated by EphA4 activation or by the xPAK1-GBD. Together, the data suggest that EphA4 activation sequesters active Cdc42 and in this way down-regulates cell–cell adhesion. This novel signaling pathway suggests a mechanism for EphA4-guided migration.
机译:细胞粘附的控制是Eph受体在发育过程中调节细胞分选的重要机制。非洲爪蟾小囊中EphA4的激活诱导可逆的细胞自主粘着力的丧失和囊胚顶的破坏。我们显示该表型由Nckβ(Grb4)拯救,取决于其与EphA4的相互作用。非洲爪蟾p21 Cdc42 / Rac 激活的激酶xPAK1与Nck相互作用,被EphA4依赖Nck的方式在胚胎中激活,并且是EphA4诱导的粘连丧失所必需的。 xPAK1表型EphA4激活的异位表达。这不需要xPAK1的催化活性,但是它确实需要其GTPase结合域,并且可以通过膜靶向来增强。实际上,仅针对xPAK1的GTPase结合域(GBD)的膜靶向足以表型化EphA4的粘连丧失。 EphA4和xPAK1-GBD都下调RhoA-GTP水平,与此相一致,粘附的丢失可以由活化的Cdc42,Rac和RhoA挽救,并且可以由显性阴性RhoA上位诱导。尽管如此,EphA4激活或xPAK1-GBD均未下调Cdc42和Rac活性。在一起,数据表明EphA4激活隔离激活Cdc42,并以此下调细胞间粘附。这个新的信号通路暗示了一种由EphA4指导的迁移的机制。

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