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Receptor signaling mechanisms underlying muscarinic agonist-evoked contraction in guinea-pig ileal longitudinal smooth muscle

机译:豚鼠回肠纵向平滑肌中毒蕈碱激动剂引起的收缩的受体信号传导机制

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摘要

class="enumerated" style="list-style-type:decimal">In guinea-pig ileal longitudinal muscle, muscarinic partial agonists, 4-(N-[3-chlorophenyl]-carbomoyloxy)-2-butynyl-trimethylammonium (McN-A343) and pilocarpine, each produced parallel increases in tension and cytosolic Ca2+ concentration ([Ca2+]c) with a higher EC50 than that of the full agonist carbachol. The maximum response of [Ca2+]c or tension was not much different among the three agonists. The Ca2+ channel blocker nicardipine markedly inhibited the effects of all three agonistsThe contractile response to any agonist was antagonized in a competitive manner by M2 receptor selective antagonists (N,N′-bis[6-[[(2-methoyphenyl)methyl]amino]hexyl]-1,8-octanediamine tetrahydrochloride and 11-[[2-[(diethlamino)methyl]-1-piperidinyl]acetyl]-5,11-dihydro-6H-pyrido[2,3-b][1,4] benzodiazepine-6-one), and the apparent order of M2 antagonist sensitivity was McN-A343>pilocarpine>carbachol. M3 receptor selective antagonists, 1,1-dimethyl-4-diphenylacetoxypiperidinium iodide and darifenacin, both severely depressed the maximum response for McN-A343, while darifenacin had a similar action in the case of pilocarpine. Both M3 antagonists behaved in a competitive manner in the case of the carbachol response.McN-A343 failed to release Ca2+ from the intracellular stores, and the Ca2+-releasing action of pilocarpine was very weak compared with that of carbachol. All three agonists were capable of increasing Ca2+ sensitivity of the contractile proteins.McN-A343 rarely produced membrane depolarization, but always accelerated electrical spike discharge. Pilocarpine effect was more often accompanied by membrane depolarization, as was usually seen using carbachol.The results suggest that muscarinic agonist-evoked contractions result primarily from the integration of Ca2+ entry associated with the increased spike discharge and myofilaments Ca2+ sensitization, and that Ca2+ store release may contribute to the contraction indirectly via potentiation of the electrical membrane responses. They may also support the idea that an interaction of M2 and M3 receptors plays a crucial role in mediating the contraction response.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在豚鼠回肠纵向肌肉中,毒蕈碱部分激动剂,4-(N- [3-氯苯基]-羧甲酰氧基)-2-丁炔基-三甲基铵(McN-A343)和毛果芸香碱,各自产生平行的张力增加和胞质Ca 2 + 浓度([Ca 2 + ] c)具有比完全激动剂卡巴胆碱更高的EC50。在三种激动剂中,[Ca 2 + ] c或张力的最大响应没有太大差异。 Ca 2 + 通道阻滞剂尼卡地平显着抑制所有三种激动剂的作用 M2受体选择性拮抗剂以竞争方式拮抗对任何激动剂的收缩反应(N,N ′-双[6-[[[[(2-甲基苯苯基)甲基]氨基]己基] -1,8-辛二胺四盐酸盐和11-[[[2-[(二乙氨基)甲基] -1-哌啶基]乙酰基] -5,11 -二氢-6H-吡啶并[2,3-b] [1,4]苯并二氮杂-1-酮),M2拮抗剂敏感性的表观顺序为McN-A343>毛果芸香碱>咔唑。 M3受体选择性拮抗剂碘化1,1-二甲基-4-二苯基乙酰氧基哌啶鎓和达利福那都严重降低了McN-A343的最大响应,而达利福那在毛果芸香碱中具有类似作用。在卡巴胆碱反应的情况下,两种M3拮抗剂均具有竞争性行为。 McN-A343无法从细胞内储存物中释放Ca 2 + ,而Ca 与卡巴胆碱相比,毛果芸香碱的2+释放作用非常弱。这三种激动剂均能够增加收缩蛋白的Ca 2 + 敏感性。 McN-A343很少产生膜去极化作用,但总是加速尖峰放电。毛果芸香碱作用更常伴随膜去极化,如使用卡巴胆碱通常所见。 结果表明,毒蕈碱激动剂引起的收缩主要是由Ca 2 + 进入的整合引起的。与增加的穗放电和肌丝Ca 2 + 致敏有关,并且Ca 2 + 的储存释放可能通过增强电膜反应间接地导致收缩。他们也可能支持M2和M3受体的相互作用在介导收缩反应中起关键作用的想法。

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