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心脏钠/钙交换体(即磷膜蛋白)内源性抑制剂的鉴定

Identification of an endogenous inhibitor of the cardiac Na+/Ca2+ exchanger, phospholemman.

作者信息

Ahlers Belinda A, Zhang Xue-Qian, Moorman J Randall, Rothblum Lawrence I, Carl Lois L, Song Jianliang, Wang Jufang, Geddis Lisa M, Tucker Amy L, Mounsey J Paul, Cheung Joseph Y

机构信息

Department of Cellular and Molecular Physiology, Pennsylvania State University, Hershey, 17033, USA.

出版信息

J Biol Chem. 2005 May 20;280(20):19875-82. doi: 10.1074/jbc.M414703200. Epub 2005 Mar 17.

Abstract

Rapid and precise control of Na(+)/Ca(2+) exchanger (NCX1) activity is essential in the maintenance of beat-to-beat Ca(2+) homeostasis in cardiac myocytes. Here, we show that phospholemman (PLM), a 15-kDa integral sarcolemmal phosphoprotein, is a novel endogenous protein inhibitor of cardiac NCX1. Using a heterologous expression system that is devoid of both endogenous PLM and NCX1, we first demonstrated by confocal immunofluorescence studies that both exogenous PLM and NCX1 co-localized at the plasma membrane. Reciprocal co-immunoprecipitation studies revealed specific protein-protein interaction between PLM and NCX1. The functional consequences of direct association of PLM with NCX1 was the inhibition of NCX1 activity, as demonstrated by whole-cell patch clamp studies to measure NCX1 current density and radiotracer flux assays to assess Na(+)-dependent (45)Ca(2+) uptake. Inhibition of NCX1 by PLM was specific, because a single mutation of serine 68 to alanine in PLM resulted in a complete loss of inhibition of NCX1 current, although association of the PLM mutant with NCX1 was unaltered. In native adult cardiac myocytes, PLM co-immunoprecipitated with NCX1. We conclude that PLM, a member of the FXYD family of small ion transport regulators known to modulate Na(+)-K(+)-ATPase, also regulates Na(+)/Ca(2+) exchange in the heart.

摘要

快速而精确地控制钠/钙交换体(NCX1)的活性对于维持心肌细胞逐搏的钙稳态至关重要。在此,我们表明,磷膜蛋白(PLM),一种15 kDa的肌膜整合磷蛋白,是心脏NCX1的一种新型内源性蛋白抑制剂。利用一个既缺乏内源性PLM又缺乏NCX1的异源表达系统,我们首先通过共聚焦免疫荧光研究证明,外源性PLM和NCX1都共定位于质膜。相互的共免疫沉淀研究揭示了PLM和NCX1之间存在特异性的蛋白质-蛋白质相互作用。PLM与NCX1直接结合的功能后果是抑制NCX1活性,这通过全细胞膜片钳研究测量NCX1电流密度以及放射性示踪剂通量测定来评估钠依赖性(45)钙摄取得以证明。PLM对NCX1的抑制是特异性的,因为PLM中丝氨酸68突变为丙氨酸导致对NCX1电流的抑制完全丧失,尽管PLM突变体与NCX1的结合未改变。在成年天然心肌细胞中,PLM与NCX1共免疫沉淀。我们得出结论,PLM是已知可调节钠钾ATP酶的小离子转运调节因子FXYD家族的成员,它也调节心脏中的钠/钙交换。

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