Functional coupling of V-ATPase and CLC-5

N. Satoh, Masashi Suzuki, M. Nakamura, A. Suzuki, S. Horita, G. Seki, K. Moriya
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引用次数: 9

Abstract

Dent’s disease is an X-linked renal tubulopathy characterized by low molecular weight proteinuria, hypercalciuria and progressive renal failure. Disease aetiology is associated with mutations in the CLCN5 gene coding for the electrogenic 2Cl-/H+ antiporter chloride channel 5 (CLC-5), which is expressed in the apical endosomes of renal proximal tubules with the vacuolar type H+-ATPase (V-ATPase). Initially identified as a member of the CLC family of Cl- channels, CLC-5 was presumed to provide Cl- shunt into the endosomal lumen to dissipate H+ accumulation by V-ATPase, thereby facilitating efficient endosomal acidification. However, recent findings showing that CLC-5 is in fact not a Cl- channel but a 2Cl-/H+ antiporter challenged this classical shunt model, leading to a renewed and intense debate on its physiological roles. Cl- accumulation via CLC-5 is predicted to play a critical role in endocytosis, as illustrated in mice carrying an artificial Cl- channel mutation E211A that developed defective endocytosis but normal endosomal acidification. Conversely, a recent functional analysis of a newly identified disease-causing Cl- channel mutation E211Q in a patient with typical Dent’s disease confirmed the functional coupling between V-ATPase and CLC-5 in endosomal acidification, lending support to the classical shunt model. In this editorial, we will address the current recognition of the physiological role of CLC-5 with a specific focus on the functional coupling of V-ATPase and CLC-5.
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V-ATPase与CLC-5的功能偶联
登特氏病是一种以低分子量蛋白尿、高钙尿和进行性肾衰竭为特征的x连锁肾小管病变。该疾病的病因与编码电致2Cl-/H+反转运物氯通道5 (CLC-5)的CLCN5基因突变有关,该基因在肾近端小管的顶端内体中表达液泡型H+- atp酶(v - atp酶)。最初被确定为CLC Cl-通道家族的成员,CLC-5被认为提供Cl-分流到内体腔,以消散v - atp酶积累的H+,从而促进有效的内体酸化。然而,最近的研究结果表明,CLC-5实际上不是一个Cl-通道,而是一个2Cl-/H+逆向转运蛋白,这对这种经典的分流模型提出了挑战,导致了对其生理作用的新一轮激烈争论。通过CLC-5的Cl-积累预计在内吞作用中起关键作用,正如在携带人工Cl-通道突变E211A的小鼠中所表明的那样,该突变会导致内吞作用缺陷,但内体酸化正常。相反,最近对一名典型邓特病患者中新发现的致病Cl-通道突变E211Q的功能分析证实了v - atp酶和CLC-5在内体酸化中的功能偶联,为经典的分流模型提供了支持。在这篇社论中,我们将讨论目前对CLC-5生理作用的认识,并特别关注v - atp酶和CLC-5的功能偶联。
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