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TRP-N的兴衰,TRP-N是后生动物中一个古老的机械门控离子通道家族。

The Rise and Fall of TRP-N, an Ancient Family of Mechanogated Ion Channels, in Metazoa.

作者信息

Schüler Andreas, Schmitz Gregor, Reft Abigail, Özbek Suat, Thurm Ulrich, Bornberg-Bauer Erich

机构信息

Institute for Evolution and Biodiversity, University of Muenster, Germany.

Centre for Organismal Studies, University of Heidelberg, Germany.

出版信息

Genome Biol Evol. 2015 Jun 22;7(6):1713-27. doi: 10.1093/gbe/evv091.

Abstract

Mechanoreception, the sensing of mechanical forces, is an ancient means of orientation and communication and tightly linked to the evolution of motile animals. In flies, the transient-receptor-potential N protein (TRP-N) was found to be a cilia-associated mechanoreceptor. TRP-N belongs to a large and diverse family of ion channels. Its unusually long N-terminal repeat of 28 ankyrin domains presumably acts as the gating spring by which mechanical energy induces channel gating. We analyzed the evolutionary origins and possible diversification of TRP-N. Using a custom-made set of highly discriminative sequence profiles we scanned a representative set of metazoan genomes and subsequently corrected several gene models. We find that, contrary to other ion channel families, TRP-N is remarkably conserved in its domain arrangements and copy number (1) in all Bilateria except for amniotes, even in the wake of several whole-genome duplications. TRP-N is absent in Porifera but present in Ctenophora and Placozoa. Exceptional multiplications of TRP-N occurred in Cnidaria, independently along the Hydra and the Nematostella lineage. Molecular signals of subfunctionalization can be attributed to different mechanisms of activation of the gating spring. In Hydra this is further supported by in situ hybridization and immune staining, suggesting that at least three paralogs adapted to nematocyte discharge, which is key for predation and defense. We propose that these new candidate proteins help explain the sensory complexity of Cnidaria which has been previously observed but so far has lacked a molecular underpinning. Also, the ancient appearance of TRP-N supports a common origin of important components of the nervous systems in Ctenophores, Cnidaria, and Bilateria.

摘要

机械感受,即对机械力的感知,是一种古老的定向和交流方式,与活动动物的进化紧密相连。在果蝇中,发现瞬时受体电位N蛋白(TRP-N)是一种与纤毛相关的机械感受器。TRP-N属于一个庞大且多样的离子通道家族。其异常长的包含28个锚蛋白结构域的N端重复序列可能充当门控弹簧,机械能通过它诱导通道门控。我们分析了TRP-N的进化起源和可能的多样化。使用一组定制的高度有区分性的序列谱,我们扫描了一组代表性的后生动物基因组,随后校正了几个基因模型。我们发现,与其他离子通道家族不同,TRP-N在其结构域排列和拷贝数方面(1)在所有两侧对称动物中都非常保守,除了羊膜动物,即使在经历了几次全基因组复制之后也是如此。TRP-N在多孔动物中不存在,但在栉水母动物和扁盘动物中存在。TRP-N在刺胞动物中出现了异常的倍增,分别沿着水螅和星状海葵谱系独立发生。亚功能化的分子信号可归因于门控弹簧激活的不同机制。在水螅中,原位杂交和免疫染色进一步支持了这一点,表明至少有三个旁系同源物适应了刺细胞放电,这对捕食和防御至关重要。我们提出,这些新的候选蛋白有助于解释刺胞动物的感觉复杂性,这种复杂性此前已被观察到,但迄今为止缺乏分子基础。此外,TRP-N的古老出现支持了栉水母动物、刺胞动物和两侧对称动物神经系统重要组成部分的共同起源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ff6/4494053/64cc12c364a4/evv091f1p.jpg

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