4.7 Article

A Recurrent Gain-of-Function Mutation in CLCN6, Encoding the ClC-6 Cl-/H+-Exchanger, Causes Early-Onset Neurodegeneration

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AMERICAN JOURNAL OF HUMAN GENETICS
卷 107, 期 6, 页码 1062-1077

出版社

CELL PRESS
DOI: 10.1016/j.ajhg.2020.11.004

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资金

  1. Research Promotion Fund of the Faculty of Medicine (FFM) of the University Medical Center Hamburg-Eppendorf
  2. Deutsche Forschungsgemeinschaft [FOR 2652 (Je164/14-1), Exc257, KU 1240/10-1]
  3. Prix Louis-Jeantet de Medecine
  4. Fondazione Bambino Gesu (Vite Coraggiose)
  5. Italian Ministry of Health [CCR-2017-23669081]
  6. Children's Discovery Institute of Washington University
  7. Children's Discovery Institute of St. Louis Children's Hospital
  8. National Human Genome Research Institute [U01 HG010215]

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Dysfunction of the endolysosomal system is often associated with neurodegenerative disease because postmitotic neurons are particularly reliant on the elimination of intracellular aggregates. Adequate function of endosomes and lysosomes requires finely tuned luminal ion homeostasis and transmembrane ion fluxes. Endolysosomal CLC Cl-/H+ exchangers function as electric shunts for proton pumping and in luminal Cl- accumulation. We now report three unrelated children with severe neurodegenerative disease, who carry the same de novo c.1658A>G (p.Tyr553Cys) mutation in CLCN6, encoding the late endosomal Cl-/H+-exchanger ClC-6. Whereas Clcn6(-/-) mice have only mild neuronal lysosomal storage abnormalities, the affected individuals displayed severe developmental delay with pronounced generalized hypotonia, respiratory insufficiency, and variable neurodegeneration and diffusion restriction in cerebral peduncles, midbrain, and/or brainstem in MRI scans. The p.Tyr553Cys amino acid substitution strongly slowed ClC-6 gating and increased current amplitudes, particularly at the acidic pH of late endosomes. Transfection of ClC-6(Tyr553Cys), but not ClC-6(WT), generated giant LAMPl-positive vacuoles that were poorly acidified. Their generation strictly required ClC-6 ion transport, as shown by transport-deficient double mutants, and depended on Cl-/H+ exchange, as revealed by combination with the uncoupling p.Glu200Ala substitution. Transfection of either ClC-6(Tyr553Cys/Glu200Ala) or ClC-6(Glu200Ala) generated slightly enlarged vesicles, suggesting that p.G1u200Ala, previ- ously associated with infantile spasms and microcephaly, is also pathogenic. Bafilomycin treatment abrogated vacuole generation, indicating that H+-driven Cl- accumulation osmotically drives vesicle enlargement. Our work establishes mutations in CLCN6 associated with neurological diseases, whose spectrum of clinical features depends on the differential impact of the allele on ClC-6 function.

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