Malakauskas Sandra M, Quan Hui, Fields Timothy A, McCall Shannon J, Yu Ming-Jiun, Kourany Wissam M, Frey Campbell W, Le Thu H
Dept. of Medicine, Duke University, Durham, NC, USA.
Am J Physiol Renal Physiol. 2007 Feb;292(2):F533-44. doi: 10.1152/ajprenal.00325.2006. Epub 2006 Sep 19.
Defects in renal proximal tubule transport manifest in a number of human diseases. Although variable in clinical presentation, disorders such as Hartnup disease, Dent's disease, and Fanconi syndrome are characterized by wasting of solutes commonly recovered by the proximal tubule. One common feature of these disorders is aminoaciduria. There are distinct classes of amino acid transporters located in the apical and basal membranes of the proximal tubules that reabsorb >95% of filtered amino acids, yet few details are known about their regulation. We present our physiological characterization of a mouse line with targeted deletion of the gene collectrin that is highly expressed in the kidney. Collectrin-deficient mice display a reduced urinary concentrating capacity due to enhanced solute clearance resulting from profound aminoaciduria. The aminoaciduria is generalized, characterized by loss of nearly every amino acid, and results in marked crystalluria. Furthermore, in the kidney, collectrin-deficient mice have decreased plasma membrane populations of amino acid transporter subtypes B(0)AT1, rBAT, and b(0,+)AT, as well as altered cellular distribution of EAAC1. Our data suggest that collectrin is a novel mediator of renal amino acid transport and may provide further insight into the pathogenesis of a number of human disease correlates.
肾近端小管转运缺陷在许多人类疾病中都有表现。尽管临床表现各异,但诸如哈特纳普病、丹特病和范科尼综合征等疾病的特征是近端小管通常重吸收的溶质流失。这些疾病的一个共同特征是氨基酸尿症。位于近端小管顶端和基底膜的氨基酸转运体有不同类别,它们能重吸收超过95%的滤过氨基酸,但对其调节的细节了解甚少。我们展示了对一种基因靶向缺失的小鼠品系的生理学特征研究,该基因是在肾脏中高表达的collectrin。Collectrin基因缺失的小鼠由于严重氨基酸尿导致溶质清除增强,从而尿浓缩能力降低。氨基酸尿是全身性 的,几乎每种氨基酸都会流失,导致明显的晶体尿。此外,在肾脏中,collectrin基因缺失的小鼠氨基酸转运体亚型B(0)AT1、rBAT和b(0,+)AT的质膜数量减少,同时EAAC1的细胞分布也发生改变。我们的数据表明,collectrin是肾脏氨基酸转运的一种新型介质,可能为深入了解许多人类疾病相关的发病机制提供进一步的线索。