Bhartur S G, Ballarin L J, Musch M W, Bookstein C, Chang E B, Rao M C
Department of Physiology and Biophysics, University of Illinois at Chicago, 60612, Illinois.
Am J Physiol. 1999 Mar;276(3):R838-46. doi: 10.1152/ajpregu.1999.276.3.R838.
We report the characterization of an Na+/H+ exchanger (NHE) in embryonic fibroblasts (SL-29 cells) of the chicken, a terrestrial vertebrate, where Na+ conservation is important. This exchanger is electroneutral, has a single Na+ binding site, and is highly sensitive to amiloride (IC50 2 microM), dimethyl amiloride (350 nM), and ethyl-isopropyl amiloride (25 nM). It is stimulated by serum, transforming growth factor-alpha, hypertonicity, and okadaic acid. Although these features make it resemble mammalian NHE1, other characteristics suggest distinct differences. First, in contrast to mammalian NHE1 it is inhibited by cAMP and shows a biphasic response to phorbol esters and a highly variable response to increased intracellular Ca2+ concentration. Second, whereas full-length human and rat NHE1 cDNA probes recognize a 4.8-kb transcript in rat tissues, they recognize only a 3.9-kb transcript in chicken tissues. An antibody against amino acids 631-746 of human NHE1 sequence fails to recognize a protein in SL-29 cells. Rat NHE2 and NHE3 probes do not recognize any transcript in chicken fibroblasts. The SL-29 exchanger differs markedly from the previously characterized chicken intestinal apical exchanger in its amiloride sensitivity and regulation by phorbol esters. These results suggest that a modified version of mammalian NHE1 is present in chicken tissues and imply that another functionally distinct Na+/H+ exchanger is expressed in aves.
我们报道了在鸡(一种陆生脊椎动物,保钠很重要)的胚胎成纤维细胞(SL-29细胞)中对一种钠氢交换体(NHE)的特性描述。这种交换体是电中性的,有一个单一的钠结合位点,对氨氯吡脒(IC50为2微摩尔)、二甲基氨氯吡脒(350纳摩尔)和乙基异丙基氨氯吡脒(25纳摩尔)高度敏感。它受到血清、转化生长因子-α、高渗和冈田酸的刺激。尽管这些特征使其类似于哺乳动物的NHE1,但其他特性表明存在明显差异。首先,与哺乳动物的NHE1不同,它受到环磷酸腺苷(cAMP)的抑制,对佛波酯表现出双相反应,对细胞内钙离子浓度升高表现出高度可变的反应。其次,全长的人类和大鼠NHE1 cDNA探针在大鼠组织中识别出一个4.8千碱基的转录本,但在鸡组织中只识别出一个3.9千碱基的转录本。一种针对人类NHE1序列631-746位氨基酸的抗体无法识别SL-29细胞中的一种蛋白质。大鼠NHE2和NHE3探针在鸡成纤维细胞中未识别出任何转录本。SL-29交换体在氨氯吡脒敏感性和佛波酯调节方面与先前描述的鸡肠顶端交换体明显不同。这些结果表明鸡组织中存在一种经修饰的哺乳动物NHE1版本,并暗示鸟类中表达了另一种功能不同的钠氢交换体。