首页> 外文期刊>American Journal of Physiology >Active K+ secretion through multiple KCa-type channels and regulation by IKCa channels in rat proximal colon.
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Active K+ secretion through multiple KCa-type channels and regulation by IKCa channels in rat proximal colon.

机译:在大鼠近端结肠中通过多个KCa型通道活跃的K +分泌,并由IKCa通道调节。

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Colonic K+ secretion stimulated by cholinergic agents requires activation of muscarinic receptors and the release of intracellular Ca2+. However, the precise mechanisms by which this rise in Ca2+ leads to K+ efflux across the apical membrane are poorly understood. In the present study, Northern blot analysis of rat proximal colon revealed the presence of transcripts encoding rSK2 [small conductance (SK)], rSK4 [intermediate conductance (IK)], and rSlo [large conductance (BK)] Ca2+-activated K+ channels. In dietary K+-depleted animals, only rSK4 mRNA was reduced in the colon. On the basis of this observation, a cDNA encoding the K+ channel rSK4 was cloned from a rat colonic cDNA library. Transfection of this cDNA into Chinese hamster ovary (CHO) cells led to the expression of Ca2+-activated K+ channels that were blocked by the IK channel inhibitor clotrimazole (CLT). Confocal immunofluorescence confirmed the presence of IK channels in proximal colonic crypts, and Western blotting demonstrated that IK protein sorted to both the apical and basolateral surfaces of colonic epithelia. In addition, transcellular active K+ secretion was studied on epithelial strips of rat proximal colon using unidirectional 86Rb+ fluxes. The addition of thapsigargin or carbachol to the serosal surface enhanced net 86Rb+ secretion. The mucosal addition of CLT completely inhibited carbachol-induced net 86Rb+ secretion. In contrast, only partial inhibition was observed with the BK and SK channel inhibitors, iberiotoxin and apamin, respectively. Finally, in parallel with the reduction in SK4 message observed in animals deprived of dietary K+, carbachol-induced 86Rb+ secretion was abolished in dietary K+-depleted animals. These results suggest that the rSK4 channel mediates K+ secretion induced by muscarinic agonists in the rat proximal colon and that transcription of the rSK4 channel is downregulated to prevent K+ loss during dietary K+ depletion.
机译:胆碱能药物刺激结肠K +分泌需要激活毒蕈碱受体并释放细胞内Ca2 +。但是,人们对这种Ca2 +升高导致跨整个根膜的K +外排的确切机制了解甚少。在本研究中,对大鼠近端结肠的Northern印迹分析显示,存在编码rSK2 [小电导(SK)],rSK4 [中电导(IK)]和rSlo [大电导(BK)] Ca2 +激活的K +通道的转录本。在缺乏K +的饮食动物中,结肠中仅rSK4 mRNA减少。基于该观察结果,从大鼠结肠cDNA文库克隆了编码K +通道rSK4的cDNA。将此cDNA转染到中国仓鼠卵巢(CHO)细胞中导致了由IK通道抑制剂克霉唑(CLT)阻断的Ca2 +激活的K +通道的表达。共聚焦免疫荧光证实近端结肠隐窝中存在IK通道,Western印迹显示IK蛋白在结肠上皮的顶表面和基底外侧表面均分选。此外,使用单向86Rb +通量研究了大鼠近端结肠上皮条上的跨细胞活性K +分泌。 thapsigargin或卡巴胆碱添加至浆膜表面可增强净86Rb +分泌。 CLT的粘膜添加完全抑制了卡巴胆碱诱导的净86Rb +分泌。相反,分别用BK和SK通道抑制剂iberiotoxin和apamin只能观察到部分抑制。最后,与在缺乏饮食K +的动物中观察到的SK4信息减少同时,在饮食K +缺乏的动物中消除了卡巴胆碱诱导的86Rb +分泌。这些结果表明,rSK4通道介导了毒蕈碱激动剂在大鼠近端结肠中诱导的K +分泌,并且rSK4通道的转录被下调,以防止饮食中K +耗竭期间K +的丢失。

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