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保守激酶的负反馈调节 Raf 的降解,从而影响体腔命运图式的形成。

Negative feedback by conserved kinases patterns the degradation of Raf in vulval fate patterning.

机构信息

Department of Biological Sciences, Columbia University, New York, NY 10027, USA.

Department of Biological Sciences, University of Wisconsin Milwaukee, Milwaukee, WI 53201, USA.

出版信息

Development. 2020 Dec 23;147(24):dev195941. doi: 10.1242/dev.195941.

Abstract

Activation of a canonical EGFR-Ras-Raf-ERK cascade initiates patterning of multipotent vulval precursor cells (VPCs) of We have previously shown that this pathway includes a negative-feedback component in which MPK-1/ERK activity targets the upstream kinase LIN-45/Raf for degradation by the SEL-10/FBXW7 E3 ubiquitin ligase. This regulation requires a Cdc4 phosphodegron (CPD) in LIN-45 that is conserved in BRAF. Here, we identify and characterize the minimal degron that encompasses the CPD and is sufficient for SEL-10-mediated, MPK-1-dependent protein degradation. A targeted screen of conserved protein kinase-encoding genes yielded (an ortholog of human GSK3B) and (a CDK2-related kinase) as required for LIN-45 degron-mediated turnover. Genetic analysis revealed that LIN-45 degradation is blocked at the second larval stage due to cell cycle quiescence, and that relief of this block during the third larval stage relies on activation of CDKs. Additionally, activation of MPK-1 provides spatial pattern to LIN-45 degradation but does not bypass the requirement for and This analysis supports a model whereby MPK-1/ERK, GSK-3/GSK3 and CDK-2/CDK2, along with SEL-10/FBXW7, constitute a regulatory network that exerts spatial and temporal control of LIN-45/Raf degradation during VPC patterning.

摘要

经典 EGFR-Ras-Raf-ERK 级联的激活启动了多能性腹侧前体细胞(VPC)的模式形成。我们之前已经表明,该途径包括一个负反馈组件,其中 MPK-1/ERK 活性将上游激酶 LIN-45/Raf 作为 SEL-10/FBXW7 E3 泛素连接酶的靶标进行降解。这种调节需要 LIN-45 中的 Cdc4 磷酸化降解序列(CPD),该序列在 BRAF 中保守。在这里,我们鉴定并表征了包含 CPD 并足以进行 SEL-10 介导的、MPK-1 依赖性蛋白降解的最小降解序列。对保守蛋白激酶编码基因的靶向筛选产生了 (人类 GSK3B 的同源物)和 (与 CDK2 相关的激酶)作为 LIN-45 降解序列介导的周转所必需的。遗传分析表明,由于细胞周期静止,LIN-45 的降解在第二幼虫期受阻,而在第三幼虫期,这种阻滞的缓解依赖于 CDKs 的激活。此外,MPK-1 的激活为 LIN-45 降解提供了空间模式,但不绕过对 和 的需求。这种分析支持了这样一种模型,即 MPK-1/ERK、GSK-3/GSK3 和 CDK-2/CDK2 与 SEL-10/FBXW7 一起,构成了一个调节网络,在 VPC 模式形成过程中对 LIN-45/Raf 降解施加空间和时间控制。

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