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Ste20激酶“畸形”蛋白在不同信号的下游发挥作用,调节光感受器轴突靶向和背侧闭合。

The Ste20 kinase misshapen regulates both photoreceptor axon targeting and dorsal closure, acting downstream of distinct signals.

作者信息

Su Y C, Maurel-Zaffran C, Treisman J E, Skolnik E Y

机构信息

Department of Pharmacology, Skirball Institute of Biomolecular Medicine, New York University Medical Center, New York, NY 10016, USA.

出版信息

Mol Cell Biol. 2000 Jul;20(13):4736-44. doi: 10.1128/MCB.20.13.4736-4744.2000.

Abstract

We have previously shown that the Ste20 kinase encoded by misshapen (msn) functions upstream of the c-Jun N-terminal kinase (JNK) mitogen-activated protein kinase module in Drosophila. msn is required to activate the Drosophila JNK, Basket (Bsk), to promote dorsal closure of the embryo. A mammalian homolog of Msn, Nck interacting kinase, interacts with the SH3 domains of the SH2-SH3 adapter protein Nck. We now show that Msn likewise interacts with Dreadlocks (Dock), the Drosophila homolog of Nck. dock is required for the correct targeting of photoreceptor axons. We have performed a structure-function analysis of Msn in vivo in Drosophila in order to elucidate the mechanism whereby Msn regulates JNK and to determine whether msn, like dock, is required for the correct targeting of photoreceptor axons. We show that Msn requires both a functional kinase and a C-terminal regulatory domain to activate JNK in vivo in Drosophila. A mutation in a PXXP motif on Msn that prevents it from binding to the SH3 domains of Dock does not affect its ability to rescue the dorsal closure defect in msn embryos, suggesting that Dock is not an upstream regulator of msn in dorsal closure. Larvae with only this mutated form of Msn show a marked disruption in photoreceptor axon targeting, implicating an SH3 domain protein in this process; however, an activated form of Msn is not sufficient to rescue the dock mutant phenotype. Mosaic analysis reveals that msn expression is required in photoreceptors in order for their axons to project correctly. The data presented here genetically link msn to two distinct biological events, dorsal closure and photoreceptor axon pathfinding, and thus provide the first evidence that Ste20 kinases of the germinal center kinase family play a role in axonal pathfinding. The ability of Msn to interact with distinct classes of adapter molecules in dorsal closure and photoreceptor axon pathfinding may provide the flexibility that allows it to link to distinct upstream signaling systems.

摘要

我们之前已经表明,由畸形基因(msn)编码的Ste20激酶在果蝇的c-Jun氨基末端激酶(JNK)丝裂原活化蛋白激酶模块上游发挥作用。激活果蝇的JNK(Basket,Bsk)以促进胚胎背侧闭合需要msn。Msn的一个哺乳动物同源物,Nck相互作用激酶,与SH2-SH3衔接蛋白Nck的SH3结构域相互作用。我们现在表明,Msn同样与Nck的果蝇同源物Dreadlocks(Dock)相互作用。dock是光感受器轴突正确靶向所必需的。我们在果蝇体内对Msn进行了结构-功能分析,以阐明Msn调节JNK的机制,并确定msn是否像dock一样,是光感受器轴突正确靶向所必需的。我们表明,在果蝇体内激活JNK,Msn既需要一个功能性激酶,也需要一个C末端调节结构域。Msn上一个阻止其与Dock的SH3结构域结合的PXXP基序突变,并不影响其挽救msn胚胎中背侧闭合缺陷的能力,这表明Dock不是背侧闭合中msn的上游调节因子。仅具有这种突变形式Msn的幼虫在光感受器轴突靶向方面表现出明显的破坏,这表明在此过程中有一个SH3结构域蛋白参与;然而,激活形式的Msn不足以挽救dock突变体表型。镶嵌分析表明,为了使光感受器轴突正确投射,光感受器中需要msn表达。此处呈现的数据从遗传学上把msn与两个不同的生物学事件,即背侧闭合和光感受器轴突寻路联系起来,从而首次提供证据表明生发中心激酶家族的Ste20激酶在轴突寻路中发挥作用。Msn在背侧闭合和光感受器轴突寻路中与不同类型衔接分子相互作用的能力,可能提供了使其能够与不同上游信号系统相联系的灵活性。

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