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人氯离子通道CLC-5的肾内及亚细胞分布揭示了丹特病的病理生理基础。

Intra-renal and subcellular distribution of the human chloride channel, CLC-5, reveals a pathophysiological basis for Dent's disease.

作者信息

Devuyst O, Christie P T, Courtoy P J, Beauwens R, Thakker R V

机构信息

Division of Nephrology and Cell Unit, Christian de Duve Institute of Cellular Pathology, University of LouvainnMedical School, B-1200 Brussels, Belgium.

出版信息

Hum Mol Genet. 1999 Feb;8(2):247-57. doi: 10.1093/hmg/8.2.247.

DOI:10.1093/hmg/8.2.247
PMID:9931332
Abstract

Dent's disease, which is a renal tubular disorder characterized by low molecular weight proteinuria, hypercalciuria and nephrolithiasis, is associated with inactivating mutations of the X-linked chloride channel, CLC-5. However, the manner in which a functional loss of CLC-5 leads to such diverse renal abnormalities remains to be defined. In order to elucidate this, we performed studies to determine the segmental expression of CLC-5 in the human kidney and to define its intracellular distribution. We raised and characterized antisera against human CLC-5, and identified by immunoblotting an 83 kDa band corresponding to CLC-5 in human kidney cortex and medulla. Immunohistochemistry revealed CLC-5 expression in the epithelial cells lining the proximal tubules and the thick ascending limbs of Henle's loop, and in intercalated cells of the collecting ducts. Studies of subcellular human kidney fractions established that CLC-5 distribution was associated best with that of Rab4, which is a marker of recycling early endosomes. In addition, confocal microscopy studies using the proximal tubular cell model of opossum kidney cells, which endogenously expressed CLC-5, revealed that CLC-5 co-localized with the albumin-containing endocytic vesicles that form part of the receptor-mediated endocytic pathway. Thus, CLC-5 is expressed at multiple sites in the human nephron and is likely to have a role in the receptor-mediated endocytic pathway. Furthermore, the functional loss of CLC-5 in the proximal tubules and the thick ascending limbs provides an explanation for the occurrences of low molecular weight proteinuria and hypercalciuria, respectively. These results help to elucidate further the patho-physiological basis of the renal tubular defects of Dent's disease.

摘要

登特氏病是一种肾小管疾病,其特征为低分子量蛋白尿、高钙尿症和肾结石,与X连锁氯离子通道CLC-5的失活突变有关。然而,CLC-5功能丧失导致这些多样肾脏异常的方式仍有待明确。为阐明这一点,我们进行了研究以确定CLC-5在人肾脏中的节段性表达并明确其细胞内分布。我们制备并鉴定了抗人CLC-5的抗血清,并通过免疫印迹在人肾皮质和髓质中鉴定出一条对应于CLC-5的83 kDa条带。免疫组织化学显示CLC-5在近端小管和髓袢升支粗段内衬的上皮细胞以及集合管的闰细胞中表达。对人肾亚细胞组分的研究证实,CLC-5的分布与Rab4(再循环早期内体的标志物)的分布最相关。此外,使用内源性表达CLC-5的负鼠肾细胞近端小管细胞模型进行的共聚焦显微镜研究显示,CLC-5与构成受体介导的内吞途径一部分的含白蛋白内吞囊泡共定位。因此,CLC-5在人肾单位的多个部位表达,并且可能在受体介导的内吞途径中起作用。此外,近端小管和髓袢升支粗段中CLC-5的功能丧失分别解释了低分子量蛋白尿和高钙尿症的发生。这些结果有助于进一步阐明登特氏病肾小管缺陷的病理生理基础。

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Intra-renal and subcellular distribution of the human chloride channel, CLC-5, reveals a pathophysiological basis for Dent's disease.人氯离子通道CLC-5的肾内及亚细胞分布揭示了丹特病的病理生理基础。
Hum Mol Genet. 1999 Feb;8(2):247-57. doi: 10.1093/hmg/8.2.247.
2
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Mice lacking renal chloride channel, CLC-5, are a model for Dent's disease, a nephrolithiasis disorder associated with defective receptor-mediated endocytosis.缺乏肾氯离子通道CLC-5的小鼠是丹特氏病的模型,丹特氏病是一种与受体介导的内吞作用缺陷相关的肾结石疾病。
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