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PIEZO1 是远曲小管机械感受器,是流动诱导钾分泌所必需的。

PIEZO1 is a distal nephron mechanosensor and is required for flow-induced K+ secretion.

机构信息

Department of Pediatrics, Icahn School of Medicine at Mount Sinai, New York, New York, USA.

Department of Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

出版信息

J Clin Invest. 2024 Mar 1;134(5):e174806. doi: 10.1172/JCI174806.

Abstract

Ca2+-activated BK channels in renal intercalated cells (ICs) mediate luminal flow-induced K+ secretion (FIKS), but how ICs sense increased flow remains uncertain. We examined whether PIEZO1, a mechanosensitive Ca2+-permeable channel expressed in the basolateral membranes of ICs, is required for FIKS. In isolated cortical collecting ducts (CCDs), the mechanosensitive cation-selective channel inhibitor GsMTx4 dampened flow-induced increases in intracellular Ca2+ concentration ([Ca2+]i), whereas the PIEZO1 activator Yoda1 increased [Ca2+]i and BK channel activity. CCDs from mice fed a high-K+ (HK) diet exhibited a greater Yoda1-dependent increase in [Ca2+]i than CCDs from mice fed a control K+ diet. ICs in CCDs isolated from mice with a targeted gene deletion of Piezo1 in ICs (IC-Piezo1-KO) exhibited a blunted [Ca2+]i response to Yoda1 or increased flow, with an associated loss of FIKS in CCDs. Male IC-Piezo1-KO mice selectively exhibited an increased blood [K+] in response to an oral K+ bolus and blunted urinary K+ excretion following a volume challenge. Whole-cell expression of BKα subunit was reduced in ICs of IC-Piezo1-KO mice fed an HK diet. We conclude that PIEZO1 mediates flow-induced basolateral Ca2+ entry into ICs, is upregulated in the CCD in response to an HK diet, and is necessary for FIKS.

摘要

钙激活的 BK 通道在肾间充质细胞(ICs)中介导管腔流动诱导的钾分泌(FIKS),但 ICs 如何感知增加的流动仍然不确定。我们检查了 PIEZO1,一种在 ICs 的基底外侧膜中表达的机械敏感 Ca2+通透通道,是否是 FIKS 所必需的。在分离的皮质集合管(CCDs)中,机械敏感阳离子选择性通道抑制剂 GsMTx4 减弱了流动诱导的细胞内 Ca2+浓度([Ca2+]i)增加,而 PIEZO1 激活剂 Yoda1 增加了 [Ca2+]i 和 BK 通道活性。与喂食对照 K+饮食的小鼠相比,喂食高 K+(HK)饮食的小鼠的 CCD 中 Yoda1 依赖性 [Ca2+]i 增加更大。在 IC-Piezo1-KO 小鼠的 CCD 中,IC 中 Piezo1 基因靶向缺失的 IC 细胞中(IC-Piezo1-KO),对 Yoda1 或增加的流动的 [Ca2+]i 反应减弱,与 CCD 中 FIKS 的丧失相关。雄性 IC-Piezo1-KO 小鼠选择性地表现出口服 K+ 负荷后血液 [K+]增加,以及体积挑战后尿 K+排泄减少。喂食 HK 饮食的 IC-Piezo1-KO 小鼠的 IC 细胞中 BKα 亚基的全细胞表达减少。我们得出结论,PIEZO1 介导流动诱导的 IC 基底外侧 Ca2+内流,在 HK 饮食时在 CCD 中上调,并对 FIKS 是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a77/10904061/a26da48a9b4e/jci-134-174806-g161.jpg

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