Chillarón J, Estévez R, Mora C, Wagner C A, Suessbrich H, Lang F, Gelpí J L, Testar X, Busch A E, Zorzano A, Palacín M
Departament de Bioquímica i Biologia Molecular, Facultat de Biologia, Universitat de Barcelona, Avda, Diagonal 645, Barcelona 08028, Spain.
J Biol Chem. 1996 Jul 26;271(30):17761-70. doi: 10.1074/jbc.271.30.17761.
Mutations in the rBAT gene cause type I cystinuria, a common inherited aminoaciduria of cystine and dibasic amino acids due to their defective renal and intestinal reabsorption (Calonge, M. J., Gasparini, P., Chillarón, J., Chillón, M., Gallucci, M., Rousaud, F., Zelante, L., Testar, X., Dallapiccola, B., Di Silverio, F., Barceló, P., Estivill, X., Zorzano, A., Nunes, V., and Palacín, M. (1994) Nat. Genet. 6, 420-426; Calonge, M. J., Volipini, V., Bisceglia, L., Rousaud, F., De Sanctis, L., Beccia, E., Zelante, L., Testar, X., Zorzano, A., Estivill, X., Gasparini, P., Nunes, V., and Palacín, M.(1995) Proc. Natl. Acad. Sci. U. S. A. 92, 9667-9671). One important question that remains to be clarified is how the apparently non-concentrative system bo,+-like, associated with rBAT expression, participates in the active renal reabsorption of these amino acids. Several studies have demonstrated exchange of amino acids induced by rBAT in Xenopus oocytes. Here we offer evidence that system bo,+-like is an obligatory amino acid exchanger in oocytes and in the "renal proximal tubular" cell line OK. System bo, +-like showed a 1:1 stoichiometry of exchange, and the hetero-exchange dibasic (inward) with neutral (outward) amino acids were favored in oocytes. Obligatory exchange of amino acids via system bo,+-like fully explained the amino acid-induced current in rBAT-injected oocytes. Exchange via system bo,+-like is coupled enough to ensure a specific accumulation of substrates until the complete replacement of the internal oocyte substrates. Due to structural and functional analogies of the cell surface antigen 4F2hc to rBAT, we tested for amino acid exchange via system y+L-like. 4F2hc-injected oocytes accumulated substrates to a level higher than CAT1-injected oocytes (i.e. oocytes expressing system y+) and showed exchange of amino acids with the substrate specificity of system y+L and L-leucine-induced outward currents in the absence of extracellular sodium. In contrast to L-arginine, system y+L-like did not mediate measurable L-leucine efflux from the oocyte. We propose a role of systems bo,+-like and y+L-like in the renal reabsorption of cystine and dibasic amino acids that is based on their active tertiary transport mechanism and on the apical and basolateral localization of rBAT and 4F2hc, respectively, in the epithelial cells of the proximal tubule of the nephron.
rBAT基因的突变会导致I型胱氨酸尿症,这是一种常见的遗传性胱氨酸和二碱基氨基酸尿症,原因是它们在肾脏和肠道的重吸收存在缺陷(卡洛涅,M. J.,加斯帕里尼,P.,奇亚隆,J.,奇隆,M.,加卢奇,M.,鲁索,F.,泽兰特,L.,泰斯塔,X.,达拉皮科拉,B.,迪西尔维奥,F.,巴塞洛,P.,埃斯蒂维尔,X.,索尔萨诺,A.,努涅斯,V.,以及帕拉辛,M.(1994年)《自然遗传学》6卷,420 - 426页;卡洛涅,M. J.,沃利皮尼,V.,比塞利亚,L.,鲁索,F.,德桑蒂斯,L.,贝恰,E.,泽兰特,L.,泰斯塔,X.,索尔萨诺,A.,埃斯蒂维尔,X.,加斯帕里尼,P.,努涅斯,V.,以及帕拉辛,M.(1995年)《美国国家科学院院刊》92卷,9667 - 9671页)。一个有待阐明的重要问题是,与rBAT表达相关的看似非浓缩性的bo,+-样系统如何参与这些氨基酸的肾脏主动重吸收。多项研究已证明rBAT在非洲爪蟾卵母细胞中诱导的氨基酸交换。在此我们提供证据表明,bo,+-样系统在卵母细胞和“肾近端小管”细胞系OK中是一种必需的氨基酸交换体。bo,+-样系统显示出1:1的交换化学计量比,并且在卵母细胞中,二碱基(内向)与中性(外向)氨基酸的异源交换更受青睐。通过bo,+-样系统进行的必需氨基酸交换充分解释了注射rBAT的卵母细胞中氨基酸诱导的电流。通过bo,+-样系统进行的交换耦合程度足以确保底物的特异性积累,直到卵母细胞内底物被完全替换。由于细胞表面抗原4F2hc与rBAT在结构和功能上的相似性,我们测试了通过y+L-样系统进行的氨基酸交换。注射4F2hc的卵母细胞积累底物的水平高于注射CAT1的卵母细胞(即表达y+系统的卵母细胞),并显示出具有y+L-样系统底物特异性的氨基酸交换以及在无细胞外钠的情况下L-亮氨酸诱导的外向电流。与L-精氨酸不同,y+L-样系统未介导可测量的L-亮氨酸从卵母细胞流出。我们提出,基于bo,+-样系统和y+L-样系统的主动三级转运机制,以及rBAT和4F2hc分别在肾单位近端小管上皮细胞的顶端和基底外侧定位,它们在胱氨酸和二碱基氨基酸的肾脏重吸收中发挥作用。