Chow C W
Department of Medicine, University of Toronto, Ont.
Clin Invest Med. 1999 Oct;22(5):195-206.
The Na+/H+ exchangers (NHE) are a ubiquitous family of membrane proteins that catalyze the counter-transport of extracellular Na+ for intracellular H+ and are important for intracellular pH and cell volume regulation. The major epithelial isoforms, NHE2 and NHE3, are thought to have more specialized roles in regulating Na+ and water absorption and are differentially expressed in epithelial tissues. NHE2 and NHE3 not only differ with respect to their response to various endogenous and exogenous factors but exhibit different intracellular localization as well. NHE2 is primarily located at the plasma membrane, whereas NHE3 is mostly sequestered in an intracellular compartment corresponding to the recycling endosome. Furthermore, NHE3 is localized to the apical pole, whereas polar localization of NHE2 has been controversial. The author has recently localized NHE2 to the apical membrane of a renal epithelial cell line and identified a 45-residue-long region of the cytosolic domain (corresponding to residues 731-777 of the rat NHE2) to be critical for apical targeting. Although SH3 domains of various proteins were found to bind to this and a more carboxy-terminal proline-rich region in vitro, the functional significance of these interactions appears inconsequential. Deletion of both proline-rich regions did not affect Na+/H+ exchange nor its response to hypertonicity and metabolic depletion. However, loss of residues 731-777, which bound specifically in vitro to the SH3 domain of the cytoskeletal protein, alpha-spectrin, mistargets NHE2 to the basolateral surface.
钠/氢交换体(NHE)是一类广泛存在的膜蛋白家族,可催化细胞外钠离子与细胞内氢离子的反向转运,对细胞内pH值和细胞体积调节具有重要作用。主要的上皮亚型NHE2和NHE3在调节钠和水的吸收方面被认为具有更特殊的作用,且在上皮组织中呈差异表达。NHE2和NHE3不仅在对各种内源性和外源性因素的反应方面存在差异,其细胞内定位也有所不同。NHE2主要位于质膜,而NHE3大多被隔离在与再循环内体相对应的细胞内区室中。此外,NHE3定位于顶端极,而NHE2的极性定位一直存在争议。作者最近将NHE2定位于一种肾上皮细胞系的顶端膜,并确定了胞质结构域中一个45个残基长的区域(对应大鼠NHE2的731 - 777位残基)对顶端靶向至关重要。尽管发现各种蛋白质的SH3结构域在体外可与该区域以及更靠近羧基末端的富含脯氨酸区域结合,但这些相互作用的功能意义似乎并不重要。删除两个富含脯氨酸的区域既不影响钠/氢交换,也不影响其对高渗和代谢耗竭的反应。然而,缺失731 - 777位残基(该区域在体外特异性结合细胞骨架蛋白α-血影蛋白的SH3结构域)会使NHE2错误定位于基底外侧表面。