Kao Liyo, Sassani Pakan, Azimov Rustam, Pushkin Alexander, Abuladze Natalia, Peti-Peterdi Janos, Liu Weixin, Newman Debra, Kurtz Ira
Division of Nephrology, David Geffen School Medicine, UCLA, Los Angeles, California 90095-1689, USA.
J Biol Chem. 2008 Sep 26;283(39):26782-94. doi: 10.1074/jbc.M804006200. Epub 2008 Jul 25.
The electrogenic sodium bicarbonate cotransporter NBCe1-A mediates the basolateral absorption of sodium and bicarbonate in the proximal tubule. In this study the oligomeric state and minimal functional unit of NBCe1-A were investigated. Wild-type (wt) NBCe1-A isolated from mouse kidney or heterologously expressed in HEK293 cells was predominantly in a dimeric state as was shown using fluorescence energy transfer, pulldown, immunoprecipitation, cross-linking experiments, and nondenaturing perfluorooctanoate-PAGE. NBCe1-A monomers were found to be covalently linked by S-S bonds. When each of the 15 native cysteine residues were individually removed on a wt-NBCe1-A backbone, dimerization of the cotransporter was not affected. In experiments involving multiple native cysteine residue removal, both Cys(630) and Cys(642) in extracellular loop 3 were shown to mediate S-S bond formation between NBCe1-A monomers. When native NBCe1-A cysteine residues were individually reintroduced into a cysteineless NBCe1-A mutant backbone, the finding that a Cys(992) construct that lacked S-S bonds functioned normally indicated that stable covalent linkage of NBCe1-A monomers was not a necessary requirement for functional activity of the cotransporter. Studies using concatameric constructs of wt-NBCe1-A, whose activity is resistant to methanesulfonate reagents, and an NBCe1-A(T442C) mutant, whose activity is completely inhibited by methanesulfonate reagents, confirmed that NBCe1-A monomers are functional. Our results demonstrate that wt-NBCe1-A is predominantly a homodimer, dependent on S-S bond formation that is composed of functionally active monomers.
电中性钠-碳酸氢根共转运体NBCe1-A介导近端小管中钠和碳酸氢根的基底外侧吸收。在本研究中,对NBCe1-A的寡聚状态和最小功能单位进行了研究。从小鼠肾脏分离或在HEK293细胞中异源表达的野生型(wt)NBCe1-A主要处于二聚体状态,这通过荧光能量转移、下拉、免疫沉淀、交联实验和非变性全氟辛酸聚丙烯酰胺凝胶电泳得以证实。发现NBCe1-A单体通过二硫键共价连接。当在wt-NBCe1-A骨架上逐个去除15个天然半胱氨酸残基中的每一个时,共转运体的二聚化不受影响。在涉及多个天然半胱氨酸残基去除的实验中,细胞外环3中的Cys(630)和Cys(642)均显示介导NBCe1-A单体之间的二硫键形成。当将天然NBCe1-A半胱氨酸残基逐个重新引入无半胱氨酸的NBCe1-A突变体骨架时,缺乏二硫键的Cys(992)构建体功能正常这一发现表明,NBCe1-A单体的稳定共价连接不是共转运体功能活性的必要条件。使用wt-NBCe1-A的串联构建体(其活性对甲磺酸盐试剂有抗性)和NBCe1-A(T442C)突变体(其活性被甲磺酸盐试剂完全抑制)进行的研究证实,NBCe1-A单体具有功能。我们的结果表明,wt-NBCe1-A主要是一种同源二聚体,依赖于由功能活性单体组成的二硫键形成。