首页> 外文期刊>American Journal of Physiology >rBAT-b(0,+)AT heterodimer is the main apical reabsorption system for cystine in the kidney.
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rBAT-b(0,+)AT heterodimer is the main apical reabsorption system for cystine in the kidney.

机译:rBAT-b(0,+)AT异二聚体是肾脏中胱氨酸的主要根尖重吸收系统。

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摘要

Mutations in the rBAT and b(0,+)AT genes cause type I and non-type I cystinuria, respectively. The disulfide-linked rBAT-b(0,+)AT heterodimer mediates high-affinity transport of cystine and dibasic amino acids (b(0,+)-like activity) in heterologous cell systems. However, the significance of this heterodimer for cystine reabsorption is unknown, as direct evidence for such a complex in vivo is lacking and the expression patterns of rBAT and b(0,+)AT along the proximal tubule are opposite. We addressed this issue by biochemical means. Western blot analysis of mouse and human kidney brush-border membranes showed that rBAT and b(0,+)AT were solely expressed as heterodimers of identical size and that both proteins coprecipitated. Moreover, quantitative immunopurification of b(0,+)AT followed by SDS-PAGE and mass spectrometry analysis established that b(0,+)AT heterodimerizes exclusively with rBAT. Together with cystine reabsorption data, our results demonstrate that a decreasing expression gradient of heterodimeric rBAT-b(0,+)AT along the proximal tubule is responsible for virtually all apical cystine reabsorption. As a corollary of the above, there should be an excess of rBAT expression over that of b(0,+)AT protein in the kidney. Indeed, complete immunodepletion of b(0,+)AT did not coprecipitate >20-30% of rBAT. Therefore, another rBAT-associated subunit may be present in latter parts of the proximal tubule.
机译:rBAT和b(0,+)AT基因中的突变分别导致I型和非I型胱氨酸尿症。二硫键连接的rBAT-b(0,+)AT异二聚体在异源细胞系统中介导胱氨酸和二元氨基酸的高亲和力转运(b(0,+)样活性)。然而,这种异二聚体对于胱氨酸重吸收的重要性尚不清楚,因为缺乏体内这种复合物的直接证据,并且沿近端小管的rBAT和b(0,+)AT的表达模式相反。我们通过生化手段解决了这个问题。小鼠和人肾刷状边界膜的蛋白质印迹分析表明,rBAT和b(0,+)AT仅以相同大小的异二聚体表达,并且两种蛋白共沉淀。此外,对b(0,+)AT进行定量免疫纯化,然后进行SDS-PAGE和质谱分析确定,b(0,+)AT仅与rBAT异源二聚。连同胱氨酸重吸收数据,我们的结果表明,沿近端小管异二聚体rBAT-b(0,+)AT的表达梯度降低是造成几乎所有顶端胱氨酸重吸收的原因。作为上述推论,肾脏中rBAT的表达应超过b(0,+)AT蛋白的表达。确实,b(0,+)AT的完全免疫耗竭并未使rBAT的沉淀> 20-30%。因此,另一种与rBAT相关的亚基可能存在于近端小管的后期。

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