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小鼠slc26a6阴离子交换蛋白与人SLC26A6多肽变体的功能比较:阴离子选择性、调节和电生性的差异

Functional comparison of mouse slc26a6 anion exchanger with human SLC26A6 polypeptide variants: differences in anion selectivity, regulation, and electrogenicity.

作者信息

Chernova Marina N, Jiang Lianwei, Friedman David J, Darman Rachel B, Lohi Hannes, Kere Juha, Vandorpe David H, Alper Seth L

机构信息

Molecular and Vascular Medicine Unit and Renal Unit, Beth Israel Deaconess Medical Center and Department of Medicine, Harvard Medical School, Boston, Massachusetts 02215, USA.

出版信息

J Biol Chem. 2005 Mar 4;280(9):8564-80. doi: 10.1074/jbc.M411703200. Epub 2004 Nov 17.

Abstract

The unusually low 78% amino acid identity between the orthologous human SLC26A6 and mouse slc26a6 polypeptides prompted systematic comparison of their anion transport functions in Xenopus oocytes. Multiple human SLC26A6 variant polypeptides were also functionally compared. Transport was studied as unidirectional fluxes of (36)Cl(-), [(14)C]oxalate, and [(35)S]sulfate; as net fluxes of HCO(3)(-) by fluorescence ratio measurement of intracellular pH; as current by two-electrode voltage clamp; and as net Cl(-) flux by fluorescence intensity measurement of relative changes in extracellular and intracellular [Cl(-)]. Four human SLC26A6 polypeptide variants each exhibited rates of bidirectional [(14)C]oxalate flux, Cl(-)/HCO(3)(-) exchange, and Cl(-)/OH(-) exchange nearly equivalent to those of mouse slc26a6. Cl(-)/HCO(3)(-) exchange by both orthologs was cAMP-sensitive, further enhanced by coexpressed wild type cystic fibrosis transmembrane regulator but inhibited by cystic fibrosis transmembrane regulator DeltaF508. However, the very low rates of (36)Cl(-) and [(35)S]sulfate transport by all active human SLC26A6 isoforms contrasted with the high rates of the mouse ortholog. Human and mouse orthologs also differed in patterns of acute regulation. Studies of human-mouse chimeras revealed cosegregation of the high (36)Cl(-) transport phenotype with the transmembrane domain of mouse slc26a6. Mouse slc26a6 and human SLC26A6 each mediated electroneutral Cl(-)/HCO(3)(-) and Cl(-)/OH(-) exchange. In contrast, whereas Cl(-)/oxalate exchange by mouse slc26a6 was electrogenic, that mediated by human SLC26A6 appeared electroneutral. The increased currents observed in oocytes expressing either mouse or human ortholog were pharmacologically distinct from the accompanying monovalent anion exchange activities. The human SLC26A6 polypeptide variants SLC26A6c and SLC26A6d were inactive as transporters of oxalate, sulfate, and chloride. Thus, the orthologous mouse and human SLC26A6 proteins differ in anion selectivity, transport mechanism, and acute regulation, but both mediate electroneutral Cl(-)/HCO(3)(-) exchange.

摘要

直系同源的人类SLC26A6与小鼠slc26a6多肽之间78%的氨基酸同一性异常低,这促使人们对它们在非洲爪蟾卵母细胞中的阴离子转运功能进行系统比较。还对多种人类SLC26A6变异多肽进行了功能比较。通过(36)Cl(-)、[(14)C]草酸盐和[(35)S]硫酸盐的单向通量研究转运;通过细胞内pH的荧光比率测量研究HCO(3)(-)的净通量;通过双电极电压钳研究电流;通过细胞外和细胞内[Cl(-)]相对变化的荧光强度测量研究净Cl(-)通量。四种人类SLC26A6多肽变体各自表现出的双向[(14)C]草酸盐通量、Cl(-)/HCO(3)(-)交换和Cl(-)/OH(-)交换速率几乎与小鼠slc26a6相当。两种直系同源物的Cl(-)/HCO(3)(-)交换对cAMP敏感,共表达的野生型囊性纤维化跨膜调节因子可进一步增强,但囊性纤维化跨膜调节因子DeltaF508可抑制该交换。然而,所有活性人类SLC26A6同工型的(36)Cl(-)和[(35)S]硫酸盐转运速率非常低,这与小鼠直系同源物的高速率形成对比。人类和小鼠直系同源物在急性调节模式上也存在差异。对人-鼠嵌合体的研究表明,高(36)Cl(-)转运表型与小鼠slc26a6的跨膜结构域共分离。小鼠slc26a6和人类SLC26A6均介导电中性的Cl(-)/HCO(3)(-)和Cl(-)/OH(-)交换。相比之下,虽然小鼠slc26a6的Cl(-)/草酸盐交换是电生的,但人类SLC26A6介导的该交换似乎是电中性的。在表达小鼠或人类直系同源物的卵母细胞中观察到的电流增加在药理学上与伴随的单价阴离子交换活性不同。人类SLC26A6多肽变体SLC26A6c和SLC26A6d作为草酸盐、硫酸盐和氯离子的转运体无活性。因此,直系同源的小鼠和人类SLC26A6蛋白在阴离子选择性、转运机制和急性调节方面存在差异,但两者均介导电中性的Cl(-)/HCO(3)(-)交换。

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