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Ankyrin Repeats Convey Force to Gate the NOMPC Mechanotransduction Channel

机译:锚蛋白重复传递力来控制NOMPC机械转导通道

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摘要

Howmetazoanmechanotransduction channels sense mechanical stimuli is not well understood. The NOMPC channel in the transient receptor potential (TRP) family, a mechanotransduction channel for Drosophila touch sensation and hearing, contains 29 Ankyrin repeats (ARs) that associate with microtubules. These ARs have been postulated to act as a tether that conveys force to the channel. Here, we report that these N-terminal ARs form a cytoplasmicdomain essential forNOMPC mechanogating in vitro, mechanosensitivity of touch receptor neurons in vivo, and touch-induced behaviors of Drosophila larvae. Duplicating the ARs elongates the filaments that tether NOMPC to microtubules in mechanosensory neurons. Moreover, microtubule association is required for NOMPC mechanogating. Importantly, transferring the NOMPC ARs to mechanoinsensitive voltage-gated potassium channels confers mechanosensitivity to the chimeric channels. These experiments strongly support a tethermechanismofmechanogating for the NOMPC channel, providing insights into the basis ofmechanosensitivity ofmechanotransduction channels.
机译:Howmetazoanmechanotransduction渠道感觉机械刺激不是很了解。瞬时受体电位(TRP)家族中的NOMPC通道是果蝇触觉和听觉的机械传导通道,包含29个与微管相关的锚蛋白重复(AR)。假定这些AR充当将力传递到通道的系绳。在这里,我们报告这些N端ARs形成NOMPC体外机械化,体内触摸受体神经元的机械敏感性以及果蝇幼虫的触摸诱导行为所必需的胞质域。复制AR可延长将NOMPC束缚到机械感觉神经元中微管的细丝。此外,NOMPC机械化需要微管结合。重要的是,将NOMPC ARs转移到对机械不敏感的电压门控钾离子通道上可赋予对嵌合通道机械敏感性。这些实验有力地支持了NOMPC通道的束缚机制,为深入了解机械转导通道的机械敏感性奠定了基础。

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