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结构分析与缺失诱变确定了QUIVER/无眠蛋白中与震颤型钾通道和烟碱型乙酰胆碱受体相互作用相关的区域。

Structural Analysis and Deletion Mutagenesis Define Regions of QUIVER/SLEEPLESS that Are Responsible for Interactions with Shaker-Type Potassium Channels and Nicotinic Acetylcholine Receptors.

作者信息

Wu Meilin, Liu Clifford Z, Joiner William J

机构信息

Department of Pharmacology, University of California San Diego, La Jolla, California, United States of America.

UCSD undergraduate program, Marshall College, University of California San Diego, La Jolla, California, United States of America.

出版信息

PLoS One. 2016 Feb 1;11(2):e0148215. doi: 10.1371/journal.pone.0148215. eCollection 2016.

Abstract

Ly6 proteins are endogenous prototoxins found in most animals. They show striking structural and functional parallels to snake α-neurotoxins, including regulation of ion channels and cholinergic signaling. However, the structural contributions of Ly6 proteins to regulation of effector molecules is poorly understood. This question is particularly relevant to the Ly6 protein QUIVER/SLEEPLESS (QVR/SSS), which has previously been shown to suppress excitability and synaptic transmission by upregulating potassium (K) channels and downregulating nicotinic acetylcholine receptors (nAChRs) in wake-promoting neurons to facilitate sleep in Drosophila. Using deletion mutagenesis, co-immunoprecipitations, ion flux assays, surface labeling and confocal microscopy, we demonstrate that only loop 2 is required for many of the previously described properties of SSS in transfected cells, including interactions with K channels and nAChRs. Collectively our data suggest that QVR/SSS, and by extension perhaps other Ly6 proteins, target effector molecules using limited protein motifs. Mapping these motifs may be useful in rational design of drugs that mimic or suppress Ly6-effector interactions to modulate nervous system function.

摘要

Ly6蛋白是在大多数动物体内发现的内源性原毒素。它们在结构和功能上与蛇α-神经毒素有显著的相似之处,包括对离子通道和胆碱能信号的调节。然而,Ly6蛋白对效应分子调节的结构贡献仍知之甚少。这个问题与Ly6蛋白QUIVER/SLEEPLESS(QVR/SSS)尤为相关,此前的研究表明,它通过上调钾(K)通道和下调促觉醒神经元中的烟碱型乙酰胆碱受体(nAChRs)来抑制兴奋性和突触传递,从而促进果蝇睡眠。通过缺失诱变、免疫共沉淀、离子通量测定、表面标记和共聚焦显微镜,我们证明,在转染细胞中,SSS许多先前描述的特性,包括与K通道和nAChRs的相互作用,仅需要环2。我们的数据共同表明,QVR/SSS,以及由此可能延伸到其他Ly6蛋白,利用有限的蛋白质基序靶向效应分子。绘制这些基序图谱可能有助于合理设计模拟或抑制Ly6-效应分子相互作用以调节神经系统功能的药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4785/4735452/e022b62a3d29/pone.0148215.g001.jpg

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