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首页> 外文期刊>The Journal of Physiology >Endothelin-converting enzyme-1 regulates trafficking and signalling of the neurokinin 1 receptor in endosomes of myenteric neurones.
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Endothelin-converting enzyme-1 regulates trafficking and signalling of the neurokinin 1 receptor in endosomes of myenteric neurones.

机译:内皮素转化酶-1调节肌层神经元内体中神经激肽1受体的运输和信号传导。

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Neuropeptide signalling at the plasma membrane is terminated by neuropeptide degradation by cell-surface peptidases, and by beta-arrestin-dependent receptor desensitization and endocytosis. However, receptors continue to signal from endosomes by beta-arrestin-dependent processes, and endosomal sorting mediates recycling and resensitization of plasma membrane signalling. The mechanisms that control signalling and trafficking of receptors in endosomes are poorly defined. We report a major role for endothelin-converting enzyme-1 (ECE-1) in controlling substance P (SP) and the neurokinin 1 receptor (NK(1)R) in endosomes of myenteric neurones. ECE-1 mRNA and protein were expressed by myenteric neurones of rat and mouse intestine. SP (10 nM, 10 min) induced interaction of NK(1)R and beta-arrestin at the plasma membrane, and the SP-NK(1)R-beta-arrestin signalosome complex trafficked by a dynamin-mediated mechanism to ECE-1-containing early endosomes, where ECE-1 can degrade SP. After 120 min, NK(1)R recycled from endosomes to the plasma membrane. ECE-1 inhibitors (SM-19712, PD-069185) and the vacuolar H(+)ATPase inhibitor bafilomycin A(1), which prevent endosomal SP degradation, suppressed NK(1)R recycling by >50%. Preincubation of neurones with SP (10 nM, 5 min) desensitized Ca(2+) transients to a second SP challenge after 10 min, and SP signals resensitized after 60 min. SM-19712 inhibited NK(1)R resensitization by >90%. ECE-1 inhibitors also caused sustained SP-induced activation of extracellular signal-regulated kinases, consistent with stabilization of the SP-NK(1)R-beta-arrestin signalosome. By degrading SP and destabilizing endosomal signalosomes, ECE-1 has a dual role in controlling endocytic signalling and trafficking of the NK(1)R: promoting resensitization of G protein-mediated plasma membrane signalling, and terminating beta-arrestin-mediated endosomal signalling.
机译:在质膜上的神经肽信号通过细胞表面肽酶引起的神经肽降解以及β-arrestin依赖性受体脱敏和内吞作用而终止。但是,受体继续通过β-arrestin依赖性过程从内体发出信号,并且内体分选介导了质膜信号的再循环和再敏化。控制内体中受体的信号传导和运输的机制定义不清。我们报告内皮素转换酶-1(ECE-1)在控制物质P(SP)和肌激神经元内体中的神经激肽1受体(NK(1)R)的主要作用。 ECE-1 mRNA和蛋白由大鼠和小鼠肠的肠系膜神经元表达。 SP(10 nM,10分钟)诱导NK(1)R和β-arrestin在质膜上的相互作用,以及通过动力系统介导的机制向ECE-转运的SP-NK(1)R-β-arrestin信号体复合物。含1的早期内体,其中ECE-1可以降解SP。 120分钟后,NK(1)R从内体循环到质膜。 ECE-1抑制剂(SM-19712,PD-069185)和液泡H(+)ATPase抑制剂bafilomycin A(1)可防止内体SP降解,从而抑制NK(1)R循环> 50%。与SP(10 nM,5分钟)的神经元预孵育使Ca(2+)瞬变脱敏到第二SP挑战10分钟后,和SP信号60分钟后重新敏化。 SM-19712抑制NK(1)R再敏化作用> 90%。 ECE-1抑制剂还引起持续的SP诱导的细胞外信号调节激酶的激活,与SP-NK(1)R-β-arrestin信号体的稳定相一致。通过降解SP并破坏内体信号体的稳定性,ECE-1在控制内吞信号和NK(1)R的运输中起双重作用:促进G蛋白介导的质膜信号传导的再敏化,并终止β-arrestin介导的内体信号传导。

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