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首页> 外文期刊>American Journal of Physiology >Maxi-K channels localize to caveolae in human myometrium: a role for an actin-channel-caveolin complex in the regulation of myometrial smooth muscle K+ current.
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Maxi-K channels localize to caveolae in human myometrium: a role for an actin-channel-caveolin complex in the regulation of myometrial smooth muscle K+ current.

机译:Maxi-K通道位于人子宫肌层的小窝:肌动蛋白通道-小管蛋白复合物在调节肌层平滑肌K +电流中的作用。

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Multiple cell-signaling pathways converge to modulate large-conductance, voltage- and Ca2+-sensitive K+ channel (maxi-K channel) activity and buffer cell excitability in human myometrial smooth muscle cells (hMSMCs). Recent evidence indicates that maxi-K channel proteins can target to membrane microdomains; however, their association with other proteins within these macromolecular complexes has not been elucidated. Biochemical isolation of detergent-resistant membrane fractions from human myometrium demonstrates the presence of maxi-K channels in lipid raft microdomains, which cofractionate with caveolins. In both nonpregnant and late-pregnant myometrium, maxi-K channels associate and colocalize with caveolar scaffolding proteins caveolin-1 and caveolin-2, but not caveolin-3. Disruption of cultured hMSMC caveolar complexes by cholesterol depletion with cyclodextrin increases an iberiotoxin-sensitive K+ current. Co-immunoprecipitations have indicated that the maxi-K channel also is associated with both alpha- and gamma-actin. Immunocytochemical analysis indicates colocalization of maxi-K channels, actin, and caveolin-1 in primary cultures of hMSMCs. Further experiments using immunoelectron microscopy have shown the proximity of both actin and the maxi-K channel within the same cell surface caveolar structures. Functionally, disruption of the actin cytoskeleton in cultured hMSMCs by cytochalasin D and latrunculin A greatly increased the open-state probability of the channel, while stabilization of actin cytoskeleton with jasplakinolide abolished the effect of latrunculin A. These data indicate that the actin cytoskeleton is involved as part of a caveolar complex in the regulation of myometrial maxi-K channel function.
机译:多种细胞信号通路汇聚在一起,以调节人肌层平滑肌细胞(hMSMC)中的大电导,电压和Ca2 +敏感的K +通道(maxi-K通道)活性和缓冲细胞兴奋性。最近的证据表明,maxi-K通道蛋白可以靶向膜微结构域。然而,尚未阐明它们与这些大分子复合物中的其他蛋白质的缔合。从人子宫肌膜对去污剂有抵抗力的膜级分的生化分离表明,脂质筏微区中存在maxi-K通道,该通道与小窝蛋白共分离。在非妊娠和晚期妊娠的子宫肌层中,maxi-K通道均与小窝支架蛋白caveolin-1和caveolin-2结合并共定位,但与caveolin-3无关。胆固醇与环糊精的消耗会破坏培养的hMSMC海绵状复合物,增加了对纤毛毒素敏感的K +电流。免疫共沉淀表明maxi-K通道也与α-肌动蛋白和γ-肌动蛋白都有关。免疫细胞化学分析表明在hMSMC的原代培养中,maxi-K通道,肌动蛋白和小窝蛋白1共定位。使用免疫电子显微镜的进一步实验表明肌动蛋白和maxi-K通道在同一细胞表面海绵体结构内的接近性。在功能上,细胞松弛素D和latrunculin A对培养的hMSMC中肌动蛋白细胞骨架的破坏极大地增加了该通道的开放状态概率,而用jasplakinolide稳定肌动蛋白细胞骨架消除了latrunculin A的作用。这些数据表明肌动蛋白细胞骨架参与其中。作为海绵体复合物的一部分,可调节肌层maxi-K通道功能。

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