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Extracellular proteins organize the mechanosensory channel complex in C. elegans touch receptor neurons.

机译:细胞外蛋白在秀丽隐杆线虫接触受体神经元中组织机械感觉通道复合体。

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摘要

Specialized extracellular matrix (ECM) is associated with virtually every mechanosensory system studied. C. elegans touch receptor neurons have specialized ECM and attach to the surrounding epidermis. The mec-1 gene encodes an ECM protein with multiple EGF and Kunitz domains. MEC-1 is needed for the accumulation of the collagen MEC-5 and other ECM components, attachment, and, separately, for touch sensitivity. MEC-1 and MEC-5 bind to touch processes uniformly and in puncta. These puncta colocalize with and localize the mechanosensory channel complex in the touch neurons. In turn, the production of the MEC-1 and MEC-5 puncta appears to rely on interactions with the neighboring epidermal tissue. These and other observations lead us to propose that extracellular, but not cytoskeletal, tethering of the degenerin channel is needed for mechanosensory transduction. Additionally, our experiments demonstrate an important role of the ECM in organizing the placement of the channel complex.
机译:专门的细胞外基质(ECM)与研究的几乎每个机械感觉系统都相关。秀丽隐杆线虫触摸受体神经元具有特殊的ECM,并附着在周围的表皮上。 mec-1基因编码具有多个EGF和Kunitz域的ECM蛋白。 MEC-1是胶原蛋白MEC-5和其他ECM成分,附着物以及触摸敏感度的积累所必需的。 MEC-1和MEC-5均匀且点状地结合到触摸过程。这些点与触摸神经元中的机械感觉通道复合体共定位并定位。反过来,MEC-1和MEC-5泪点的产生似乎依赖于与邻近表皮组织的相互作用。这些和其他观察结果使我们提出,对于机械感测转导,简并蛋白通道的胞外而非细胞骨架系留是必要的。此外,我们的实验证明了ECM在组织通道复合体放置中的重要作用。

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