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Emerging role of the calcium-activated, small conductance, SK3 K + channel in distal tubule function: Regulation by TRPV4

机译:钙激活,小电导,sK3 K + 通道在远端小管功能中的新兴作用:TRpV4的调节

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摘要

The Ca2+-activated, maxi-K (BK) K+ channel, with low Ca2+-binding affinity, is expressed in the distal tubule of the nephron and contributes to flow-dependent K+ secretion. In the present study we demonstrate that the Ca2+-activated, SK3 (KCa2.3) K + channel, with high Ca2+-binding affinity, is also expressed in the mouse kidney (RT-PCR, immunoblots). Immunohistochemical evaluations using tubule specific markers demonstrate significant expression of SK3 in the distal tubule and the entire collecting duct system, including the connecting tubule (CNT) and cortical collecting duct (CCD). In CNT and CCD, main sites for K+ secretion, the highest levels of expression were along the apical (luminal) cell membranes, including for both principal cells (PCs) and intercalated cells (ICs), posturing the channel for Ca2+- dependent K+ secretion. Fluorescent assessment of cell membrane potential in native, split-opened CCD, demonstrated that selective activation of the Ca2+-permeable TRPV4 channel, thereby inducing Ca2+ influx and elevating intracellular Ca2+ levels, activated both the SK3 channel and the BK channel leading to hyperpolarization of the cell membrane. The hyperpolarization response was decreased to a similar extent by either inhibition of SK3 channel with the selective SK antagonist, apamin, or by inhibition of the BK channel with the selective antagonist, iberiotoxin (IbTX). Addition of both inhibitors produced a further depolarization, indicating cooperative effects of the two channels on Vm. It is concluded that SK3 is functionally expressed in the distal nephron and collecting ducts where induction of TRPV4-mediated Ca2+ influx, leading to elevated intracellular Ca2+ levels, activates this high Ca2+- affinity K+ channel. Further, with sites of expression localized to the apical cell membrane, especially in the CNT and CCD, SK3 is poised to be a key pathway for Ca2+-dependent regulation of membrane potential and K+ secretion. © 2014 Berrout et al.
机译:具有低Ca2 +结合亲和力的Ca2 +激活的maxi-K(BK)K +通道在肾单位的远端小管中表达,并有助于血流依赖性K +分泌。在本研究中,我们证明了具有高Ca2 +结合亲和力的Ca2 +激活的SK3(KCa2.3)K +通道也在小鼠肾脏中表达(RT-PCR,免疫印迹)。使用肾小管特异性标记物进行的免疫组织化学评估表明,SK3在远端肾小管和整个收集管系统(包括连接小管(CNT)和皮质收集管(CCD))中都有明显表达。在CNT和CCD中,K +分泌的主要位点表达最高,是沿着顶端(腔)细胞膜,包括主细胞(PC)和插层细胞(IC),从而使依赖Ca2 +的K +分泌通道成为可能。 。对天然的,开裂的CCD中细胞膜电位的荧光评估表明,Ca2 +渗透性TRPV4通道的选择性激活,从而诱导Ca2 +流入并升高细胞内Ca2 +水平,同时激活了SK3通道和BK通道,导致了超极化。细胞膜。通过用选择性SK拮抗剂阿帕明抑制SK3通道,或通过用选择性拮抗剂iberiotoxin(IbTX)抑制BK通道,可将超极化反应降低至相似的程度。两种抑制剂的加入均产生了进一步的去极化作用,表明这两个通道对Vm具有协同作用。结论是,SK3在远端肾单位和收集管中功能性表达,在那里诱导TRPV4介导的Ca2 +内流,导致细胞内Ca2 +水平升高,激活了这种高Ca2 +-亲和力K +通道。此外,由于表达位点位于顶端细胞膜上,尤其是在CNT和CCD中,SK3有望成为依赖Ca2 +调节膜电位和K +分泌的关键途径。 ©2014 Berrout等。

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