Marini A M, Matassi G, Raynal V, André B, Cartron J P, Chérif-Zahar B
Laboratoire de Physiologie Cellulaire, Université Libre de Bruxelles, Institut de Biologie et de Médecine Moléculaires, Gosselies, Belgium.
Nat Genet. 2000 Nov;26(3):341-4. doi: 10.1038/81656.
The Rhesus blood-group antigens are defined by a complex association of membrane polypeptides that includes the non-glycosylated Rh proteins (RhD and RhCE) and the RHag glycoprotein, which is strictly required for cell surface expression of these antigens. RhAG and the Rh polypeptides are erythroid-specific transmembrane proteins belonging to the same family (36% identity). Despite their importance in transfusion medicine, the function of RhAG and Rh proteins remains unknown, except that their absence in Rh(null) individuals leads to morphological and functional abnormalities of erythrocytes, known as the Rh-deficiency syndrome. We recently found significant sequence similarity between the Rh family proteins, especially RhAG, and Mep/Amt ammonium transporters. We show here that RhAG and also RhGK, a new human homologue expressed in kidney cells only, function as ammonium transport proteins when expressed in yeast. Both specifically complement the growth defect of a yeast mutant deficient in ammonium uptake. Moreover, ammonium efflux assays and growth tests in the presence of toxic concentrations of the analogue methylammonium indicate that RhAG and RhGK also promote ammonium export. Our results provide the first experimental evidence for a direct role of RhAG and RhGK in ammonium transport. These findings are of high interest, because no specific ammonium transport system has been characterized so far in human.
恒河猴血型抗原由膜多肽的复杂组合所定义,其中包括非糖基化的Rh蛋白(RhD和RhCE)以及RHag糖蛋白,这些抗原在细胞表面表达严格需要RHag糖蛋白。RhAG和Rh多肽是属于同一家族的红系特异性跨膜蛋白(同一性为36%)。尽管它们在输血医学中很重要,但RhAG和Rh蛋白的功能仍然未知,只是Rh(null)个体中它们的缺失会导致红细胞的形态和功能异常,即所谓的Rh缺乏综合征。我们最近发现Rh家族蛋白,尤其是RhAG,与Mep/Amt铵转运蛋白之间存在显著的序列相似性。我们在此表明,RhAG以及仅在肾细胞中表达的新人类同源物RhGK,在酵母中表达时可作为铵转运蛋白发挥作用。两者都能特异性地弥补铵摄取缺陷酵母突变体的生长缺陷。此外,铵外流测定以及在存在有毒浓度类似物甲铵的情况下进行的生长测试表明,RhAG和RhGK也促进铵的输出。我们的结果为RhAG和RhGK在铵转运中的直接作用提供了首个实验证据。这些发现备受关注,因为迄今为止人类中尚未鉴定出特定的铵转运系统。