首页> 外文期刊>American Journal of Physiology >Calmodulin-dependent binding to the NHE1 cytosolic tail mediates activation of the Na+/H+ exchanger by Ca2+ and endothelin
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Calmodulin-dependent binding to the NHE1 cytosolic tail mediates activation of the Na+/H+ exchanger by Ca2+ and endothelin

机译:钙调蛋白依赖性结合到NHE1胞质尾巴介导Ca2 +和内皮素激活Na + / H +交换子

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摘要

The mammalian Na+/H+ exchanger isoform 1 (NHE1) is a ubiquitous plasma membrane protein that regulates intracellular pH by removing a single proton (H+) in exchange for one extracellular Na+. The human protein contains a ~500-amino acid membrane domain and a regulatory, ~315-amino acid cytosolic domain. NHE1 is activated by a number of hormones including endothelin (ET) and by Ca2++. The regulatory tail possesses an inhibitory calmodulin (CaM)-binding domain, and inhibition of NHE1 is relieved by binding of a Ca2++-CaM complex. We examined the dynamics of ET-1 and Ca2++ regulation of binding to NHE1 in vivo. CFP was linked to the NHE1 protein cytoplasmic COOH terminus. This was stably transfected into AP-1 cells that are devoid of their own NHE1 protein. The protein was expressed and targeted properly and retained NHE1 activity comparable to the wild-type protein. We examined the in vivo coupling of NHE1 to CaM by F?rster resonance energy transfer using CaM linked to the fluorescent protein Venus. CaM interaction with NHE1 was dynamic. Removal of serum reduced CaM interaction with NHE1. Addition of the Ca2++ ionophore ionomycin increased the interaction between CaM and NHE1. We expressed an ET receptor in AP-1 cells and also found a time-dependent association of NHE1 with CaM in vivo that was dependent on ET treatment. The results are the first demonstration of the in vivo association of NHE1 and CaM through ET-dependent signaling pathways.
机译:哺乳动物Na + / H +交换异构体1(NHE1)是一种普遍存在的质膜蛋白,通过去除单个质子(H +)交换一种细胞外Na +来调节细胞内pH。人蛋白质包含约500个氨基酸的膜结构域和一个约315个氨基酸的调节性胞质结构域。 NHE1被多种激素激活,包括内皮素(ET)和Ca2 ++。调节尾巴具有抑制钙调蛋白(CaM)结合域,并通过结合Ca2 ++-CaM复合物来减轻对NHE1的抑制。我们检查了ET-1和Ca2 ++调节与NHE1结合的体内动力学。 CFP连接到NHE1蛋白胞质COOH末端。将其稳定转染到不含自身NHE1蛋白的AP-1细胞中。该蛋白被正确表达和靶向,并保留了与野生型蛋白相当的NHE1活性。我们通过使用与荧光蛋白金星相连的CaM进行共振共振能量转移,研究了NHE1与CaM的体内偶联。 CaM与NHE1的相互作用是动态的。去除血清可降低CaM与NHE1的相互作用。 Ca2 ++离子载体离子霉素的添加增加了CaM和NHE1之间的相互作用。我们在AP-1细胞中表达了ET受体,并且还发现NHE1与CaM在体内的时间依赖性相关,这与ET治疗有关。该结果首次证明了NHE1和CaM通过ET依赖性信号通路在体内的缔合。

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