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Human Rhesus B and Rhesus C glycoproteins: properties of facilitated ammonium transport in recombinant kidney cells

机译:人恒河猴B和恒河猴C糖蛋白:重组肾脏细胞中促进铵转运的特性

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摘要

The mammalian Rh (Rhesus) protein family belongs to the Amt/Mep (ammonia transporter/methylammonium permease)/Rh superfamily of ammonium transporters. Whereas RhCE, RhD and RhAG are erythroid specific, RhBG and RhCG are expressed in key organs associated with ammonium transport and metabolism. We have investigated the ammonium transport function of human RhBG and RhCG by comparing intracellular pH variation in wild-type and transfected HEK-293 (human embryonic kidney) cells and MDCK (Madin–Darby canine kidney) cells in the presence of ammonium (NH4+/NH3) gradients. Stopped-flow spectrofluorimetry analysis, using BCECF [2′,7′-bis-(2-carboxyethyl)-5(6)-carboxyfluorescein] as a pH-sensitive probe, revealed that all cells submitted to inwardly or outwardly directed ammonium gradients exhibited rapid alkalinization or acidification phases respectively, which account for ammonium movements in transfected and native cells. However, as compared with wild-type cells known to have high NH3 lipid permeability, RhBG- and RhCG-expressing cells exhibited ammonium transport characterized by: (i) a five to six times greater kinetic rate-constant; (ii) a weak temperature-dependence; and (iii) reversible inhibition by mercuric chloride (IC50: 52 μM). Similarly, when subjected to a methylammonium gradient, RhBG- and RhCG-expressing cells exhibited kinetic rate constants greater than those of native cells. However, these constants were five times higher for RhBG as compared with RhCG, suggesting a difference in substrate accessibility. These results, indicating that RhBG and RhCG facilitate rapid and low-energy-dependent bi-directional ammonium movement across the plasma membrane, favour the hypothesis that these Rh glycoproteins, together with their erythroid homologue RhAG [Ripoche, Bertrand, Gane, Birkenmeier, Colin and Cartron (2005) Proc. Natl. Acad. Sci. U.S.A. >101, 17222–17227] constitute a family of NH3 channels in mammalian cells.
机译:哺乳动物Rh(Rhesus)蛋白家族属于Amt / Mep(氨转运蛋白/甲基铵通透酶)/ Rh铵转运蛋白超家族。 RhCE,RhD和RhAG是类胡萝卜素特异性的,而RhBG和RhCG在与铵转运和代谢相关的关键器官中表达。我们通过比较存在铵盐(NH4 < sup> + / NH3)渐变。使用BCECF [2',7'-双-(2-羧基乙基)-5(6)-羧基荧光素]作为pH敏感探针的停止流式荧光分析法显示,所有向内或向外定向的铵梯度均呈递快速碱化或酸化阶段,分别解释了转染和天然细胞中铵的移动。然而,与已知具有高NH3脂质渗透性的野生型细胞相比,表达RhBG和RhCG的细胞表现出铵转运,其特征在于:(i)恒定速率高五到六倍; (ii)温度依赖性弱; (iii)氯化汞的可逆抑制作用(IC50:52μM)。类似地,当受到甲基铵梯度作用时,表达RhBG和RhCG的细胞显示出的动力学速率常数大于天然细胞。但是,RhBG的这些常数是RhCG的五倍,这表明底物可及性有所不同。这些结果表明,RhBG和RhCG促进了跨膜质膜的快速且低能量依赖性的双向氨运动,支持以下假说:这些Rh糖蛋白及其类红系同源物RhAG [Ripoche,Bertrand,Gane,Birkenmeier,Colin和Cartron(2005)Proc。 Natl。学院科学美国> 101 ,17222–17227]构成了哺乳动物细胞中的NH3通道家族。

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