Bauch Christian, Verrey François
Institute of Physiology, University of Zürich, CH-8057 Zürich, Switzerland.
Am J Physiol Renal Physiol. 2002 Jul;283(1):F181-9. doi: 10.1152/ajprenal.00212.2001.
The luminal uptake of L-cystine and cationic amino acids by (re)absorptive epithelia, as found in the small intestine and the proximal kidney tubule, is mediated by the transport system b(0,+), which is defective in cystinuria. Expression studies in Xenopus laevis oocytes and other nonepithelial cells as well as genetic studies on cystinuria patients have demonstrated that two gene products, the glycoprotein rBAT and the multitransmembrane-domain protein b(0,+)AT, are required for system b(0,+) function. To study the biosynthesis, surface expression, polarity, and function of this heterodimer in an epithelial context, we established stable Madin-Darby canine kidney (MDCK) cell lines expressing rBAT and/or b(0,+)AT. Confocal immunofluorescence microscopy shows that both subunits depend on each other for apical surface expression. Immunoprecipitation of biosynthetically labeled proteins indicates that b(0,+)AT is stable in the absence of rBAT, whereas rBAT is rapidly degraded in the absence of b(0,+)AT. When both are coexpressed, they associate covalently and rBAT becomes fully glycosylated and more stable. Functional experiments show that the expressed transport is of the high-affinity b(0,+)-type and is restricted to the apical side of the epithelia. In conclusion, coexpression experiments in MDCK cell epithelia strongly suggest that the intracellular association of rBAT and b(0,+)AT is required for the surface expression of either subunit, which together form a functional heterocomplex at the apical cell membrane.
在小肠和近端肾小管中发现,(重)吸收上皮细胞对L-胱氨酸和阳离子氨基酸的管腔摄取是由转运系统b(0,+)介导的,而胱氨酸尿症患者的该转运系统存在缺陷。在非洲爪蟾卵母细胞和其他非上皮细胞中的表达研究以及对胱氨酸尿症患者的遗传学研究表明,转运系统b(0,+)的功能需要两种基因产物,即糖蛋白rBAT和多跨膜结构域蛋白b(0,+)AT。为了在上皮细胞环境中研究这种异二聚体的生物合成、表面表达、极性和功能,我们建立了表达rBAT和/或b(0,+)AT的稳定的犬肾Madin-Darby(MDCK)细胞系。共聚焦免疫荧光显微镜显示,两个亚基的顶端表面表达相互依赖。对生物合成标记蛋白的免疫沉淀表明,在没有rBAT的情况下,b(0,+)AT是稳定的,而在没有b(0,+)AT的情况下,rBAT会迅速降解。当两者共表达时,它们会共价结合,rBAT会完全糖基化并更稳定。功能实验表明,表达的转运是高亲和力的b(0,+)型,并且局限于上皮细胞的顶端侧。总之,在MDCK细胞上皮中的共表达实验强烈表明,rBAT和b(0,+)AT的细胞内结合是任一亚基表面表达所必需的,它们共同在顶端细胞膜形成功能性异源复合物。