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TRP 家族通道在秀丽隐杆线虫中的功能和调节。

Function and regulation of TRP family channels in C. elegans.

机构信息

Life Sciences Institute and Department of Molecular & Integrative Physiology, University of Michigan, 210 Washtenaw Avenue, Ann Arbor, MI 48109, USA.

出版信息

Pflugers Arch. 2009 Sep;458(5):851-60. doi: 10.1007/s00424-009-0678-7. Epub 2009 May 8.

Abstract

Seventeen transient receptor potential (TRP) family proteins are encoded by the C. elegans genome, and they cover all of the seven TRP subfamilies, including TRPC, TRPV, TRPM, TRPN, TRPA, TRPP, and TRPML. Classical forward and reverse genetic screens have isolated mutant alleles in every C. elegans trp gene, and their characterizations have revealed novel functions and regulatory mechanisms of TRP channels. For example, the TRPC channels TRP-1 and TRP-2 control nicotine-dependent behavior, while TRP-3, a sperm TRPC channel, is regulated by sperm activation and required for sperm-egg interactions during fertilization. Similar to their vertebrate counterparts, C. elegans TRPs function in sensory physiology. For instance, the TRPV channels OSM-9 and OCR-2 act in chemosensation, osmosensation, and touch sensation, the TRPA member TRPA-1 regulates touch sensation, while the TRPN channel TRP-4 mediates proprioception. Some C. elegans TRPM, TRPP, and TRPML members exhibit cellular functions similar to their vertebrate homologues and have provided insights into human diseases, including polycystic kidney disease, hypomagnesemia, and mucolipidosis type IV. The availability of a complete set of trp gene mutants in conjunction with its facile genetics makes C. elegans a powerful model for studying the function and regulation of TRP family channels in vivo.

摘要

线虫基因组编码了 17 种瞬时受体电位 (TRP) 家族蛋白,涵盖了所有 7 种 TRP 亚家族,包括 TRPC、TRPV、TRPM、TRPN、TRPA、TRPP 和 TRPML。经典的正向和反向遗传学筛选已经分离出线虫中每个 trp 基因的突变等位基因,它们的特性揭示了 TRP 通道的新功能和调控机制。例如,TRPC 通道 TRP-1 和 TRP-2 控制尼古丁依赖性行为,而精子 TRPC 通道 TRP-3 受精子激活调控,在受精过程中对精子-卵子相互作用至关重要。与脊椎动物类似,线虫 TRP 参与感觉生理学。例如,TRPV 通道 OSM-9 和 OCR-2 参与化学感觉、渗透压感觉和触觉,TRPA 成员 TRPA-1 调节触觉,而 TRPN 通道 TRP-4 介导本体感觉。一些线虫 TRPM、TRPP 和 TRPML 成员表现出与脊椎动物同源物相似的细胞功能,并为包括多囊肾病、低镁血症和粘脂贮积症 IV 型在内的人类疾病提供了见解。一套完整的 trp 基因突变体的可用性,加上其简单的遗传学,使线虫成为研究 TRP 家族通道在体内功能和调节的强大模型。

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