Szerlip H, Palevsky P, Cox M, Blazer-Yost B
Department of Medicine, VA Medical Center, Philadelphia, PA 19104.
J Am Soc Nephrol. 1991 Dec;2(6):1108-14. doi: 10.1681/ASN.V261108.
Although one of the primary effects of aldosterone is to increase apical membrane Na+ conductance, as yet none of the proteins induced by the hormone in renal epithelia have been shown to be related to the conductive Na+ channel. Because the toad urinary bladder aldosterone-induced glycoprotein, GP70, has recently been localized to the apical surface of this Na+ transporting epithelium, whether GP70 is associated with the Na+ channel was examined. The specificities of a monoclonal antibody used to characterize GP70 (mAb 20) and a polyclonal antibody raised against the purified bovine renal papillary Na+ channel (anti-CH) were compared: GP70 was specifically immunoprecipitated by both mAb 20 and anti-CH. Moreover, the sodium dodecyl sulfate-polyacrylamide gel electrophoresis profile of mAb 20 purified toad urinary bladder membrane preparations was similar to those reported for bovine and A6 cell Na+ channels. Under nonreducing conditions, a single, very large protein was evident; reduction yielded GP70, a 140-kd polypeptide, and a number of minor bands. Interestingly, only GP70 was induced by aldosterone. Thus, GP70 appears to be associated with the toad urinary bladder conductive Na+ channel; whether GP70 is an integral subunit of the channel or whether it functions as a regulatory moiety remains to be determined. Whatever the case, because GP70 is induced by aldosterone, it likely has a central role in Na+ channel modulation.
虽然醛固酮的主要作用之一是增加顶端膜的钠电导,但迄今为止,该激素在肾上皮细胞中诱导产生的蛋白质均未显示与钠传导通道相关。由于蟾蜍膀胱醛固酮诱导的糖蛋白GP70最近已定位到这种钠转运上皮细胞的顶端表面,因此研究了GP70是否与钠通道相关。比较了用于鉴定GP70的单克隆抗体(单克隆抗体20)和针对纯化的牛肾乳头钠通道产生的多克隆抗体(抗CH)的特异性:GP70被单克隆抗体20和抗CH特异性免疫沉淀。此外,纯化的蟾蜍膀胱膜制剂的单克隆抗体20的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳图谱与报道的牛和A6细胞钠通道的图谱相似。在非还原条件下,可见单一的非常大的蛋白质;还原后产生GP70(一种140kd的多肽)和一些小条带。有趣的是,只有GP70是由醛固酮诱导产生的。因此,GP70似乎与蟾蜍膀胱钠传导通道相关;GP70是通道的一个完整亚基还是作为一个调节部分发挥作用仍有待确定。无论如何,由于GP70是由醛固酮诱导产生的,它可能在钠通道调节中起核心作用。