Endocochlear potential depends on Cl- channels: mechanism underlying deafness in Bartter syndrome IV

被引:82
作者
Rickheit, Gesa [1 ,2 ]
Maier, Hannes [3 ]
Strenzke, Nicola [4 ]
Andreescu, Corina E. [5 ]
De Zeeuw, Chris I. [5 ,6 ]
Muenscher, Adrian [3 ]
Zdebik, Anselm A. [1 ,2 ]
Jentsch, Thomas J. [1 ,2 ]
机构
[1] Leibniz Inst Mol Pharmakol FMP, D-13125 Berlin, Germany
[2] Max Delbruck Ctr Mol Med, D-13125 Berlin, Germany
[3] Univ Klinikum Hamburg Eppendorf, Dept Otolaryngol, Hamburg, Germany
[4] Brain Univ Gottingen, Ctr Mol Physiol, Dept Otolaryngol, Gottingen, Germany
[5] Erasmus MC, Dept Neurosci, Rotterdam, Netherlands
[6] Royal Acad Sci KNAW, Netherlands Inst Neurosci, Amsterdam, Netherlands
关键词
anion transport; inner ear; otoacoustic emission; potassium recycling; Sox10;
D O I
10.1038/emboj.2008.203
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Human Bartter syndrome IV is an autosomal recessive disorder characterized by congenital deafness and severe renal salt and fluid loss. It is caused by mutations in BSND, which encodes barttin, a beta-subunit of ClC-Ka and ClC-Kb chloride channels. Inner-ear-specific disruption of Bsnd in mice now reveals that the positive potential, but not the high potassium concentration, of the scala media depends on the presence of these channels in the epithelium of the stria vascularis. The reduced driving force for K+-entry through mechanosensitive channels into sensory hair cells entails a profound congenital hearing loss and subtle vestibular symptoms. Although retaining all cell types and intact tight junctions, the thickness of the stria is reduced early on. Cochlear outer hair cells degenerate over several months. A collapse of endolymphatic space was seen when mice had additionally renal salt and fluid loss due to partial barttin deletion in the kidney. Bsnd(-/-) mice thus demonstrate a novel function of Cl- channels in generating the endocochlear potential and reveal the mechanism leading to deafness in human Bartter syndrome IV.
引用
收藏
页码:2907 / 2917
页数:11
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