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ERK MAPK 通路对 Gq-Rho 信号的调控控制着. 的运动。

Modulation of Gq-Rho Signaling by the ERK MAPK Pathway Controls Locomotion in .

机构信息

Department of Biochemistry, University of Washington, Seattle, Washington 98195.

Department of Biochemistry, University of Washington, Seattle, Washington 98195

出版信息

Genetics. 2018 Jun;209(2):523-535. doi: 10.1534/genetics.118.300977. Epub 2018 Apr 3.

DOI:10.1534/genetics.118.300977
PMID:29615470
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5972424/
Abstract

The heterotrimeric G protein Gq regulates neuronal activity through distinct downstream effector pathways. In addition to the canonical Gq effector phospholipase Cβ, the small GTPase Rho was recently identified as a conserved effector of Gq. To identify additional molecules important for Gq signaling in neurons, we performed a forward genetic screen in the nematode for suppressors of the hyperactivity and exaggerated waveform of an activated Gq mutant. We isolated two mutations affecting the MAP kinase scaffold protein KSR-1 and found that KSR-1 modulates locomotion downstream of, or in parallel to, the Gq-Rho pathway. Through epistasis experiments, we found that the core ERK MAPK cascade is required for Gq-Rho regulation of locomotion, but that the canonical ERK activator LET-60/Ras may not be required. Through neuron-specific rescue experiments, we found that the ERK pathway functions in head acetylcholine neurons to control Gq-dependent locomotion. Additionally, expression of activated LIN-45/Raf in head acetylcholine neurons is sufficient to cause an exaggerated waveform phenotype and hypersensitivity to the acetylcholinesterase inhibitor aldicarb, similar to an activated Gq mutant. Taken together, our results suggest that the ERK MAPK pathway modulates the output of Gq-Rho signaling to control locomotion behavior in .

摘要

三聚体 G 蛋白 Gq 通过不同的下游效应途径调节神经元活动。除了经典的 Gq 效应物磷脂酶 Cβ外,最近还发现小 GTPase Rho 是 Gq 的保守效应物。为了鉴定在神经元中对 Gq 信号传导很重要的其他分子,我们在秀丽隐杆线虫中进行了正向遗传筛选,以寻找能抑制激活 Gq 突变体过度活跃和过度波幅的抑制子。我们分离到两个影响 MAP 激酶支架蛋白 KSR-1 的突变体,并发现 KSR-1 调节 Gq-Rho 途径下游或平行的运动。通过上位性实验,我们发现核心 ERK MAPK 级联对于 Gq-Rho 调节运动是必需的,但经典的 ERK 激活剂 LET-60/Ras 可能不是必需的。通过神经元特异性拯救实验,我们发现 ERK 途径在头部乙酰胆碱神经元中起作用,以控制 Gq 依赖性运动。此外,在头部乙酰胆碱神经元中表达激活的 LIN-45/Raf 足以引起过度波幅表型和对乙酰胆碱酯酶抑制剂 aldicarb 的超敏反应,类似于激活的 Gq 突变体。总之,我们的结果表明 ERK MAPK 途径调节 Gq-Rho 信号的输出,以控制秀丽隐杆线虫的运动行为。

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