The K–Cl cotransporter KCC3 is mutant in a severe peripheral neuropathy associated with agenesis of the corpus callosum

被引:0
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作者
Heidi C. Howard
David B. Mount
Daniel Rochefort
Nellie Byun
Nicolas Dupré
Jianming Lu
Xuemo Fan
Luyan Song
Jean-Baptiste Rivière
Claude Prévost
Jürgen Horst
Alessandro Simonati
Beate Lemcke
Rick Welch
Roger England
Frank Q. Zhan
Adriana Mercado
William B. Siesser
Alfred L. George
Michael P. McDonald
Jean-Pierre Bouchard
Jean Mathieu
Eric Delpire
Guy A. Rouleau
机构
[1] Centre for Research in Neuroscience,Renal Division
[2] McGill University and the Montreal General Hospital Research Institute,Department of Medicine
[3] West Roxbury VA Medical Center and Brigham and Women's Hospital,Department of Anesthesiology
[4] Harvard Medical School,Department of Pathology
[5] Vanderbilt University Medical Center,Department of Neurological and Visual Sciences
[6] Vanderbilt University Medical Center,Department of Pharmacology
[7] Vanderbilt University Medical Center,Department of Neurology
[8] Complexe hospitalier de la Sagamie,undefined
[9] Institut für Humangenetik,undefined
[10] Universität Münster,undefined
[11] Section of Neurology,undefined
[12] University of Verona,undefined
[13] Center for Molecular Neuroscience,undefined
[14] Vanderbilt University Medical Center,undefined
[15] Vanderbilt University Medical Center,undefined
[16] John F. Kennedy Center for Research on Human Development,undefined
[17] Vanderbilt University Medical Center,undefined
[18] Hôpital de l'Enfant Jesus,undefined
来源
Nature Genetics | 2002年 / 32卷
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摘要
Peripheral neuropathy associated with agenesis of the corpus callosum (ACCPN) is a severe sensorimotor neuropathy associated with mental retardation, dysmorphic features and complete or partial agenesis of the corpus callosum. ACCPN is transmitted in an autosomal recessive fashion and is found at a high frequency in the province of Quebec, Canada. ACCPN has been previously mapped to chromosome 15q. The gene SLC12A6 (solute carrier family 12, member 6), which encodes the K+–Cl− transporter KCC3 and maps within the ACCPN candidate region, was screened for mutations in individuals with ACCPN. Four distinct protein-truncating mutations were found: two in the French Canadian population and two in non–French Canadian families. The functional consequence of the predominant French Canadian mutation (2436delG, Thr813fsX813) was examined by heterologous expression of wildtype and mutant KCC3 in Xenopus laevis oocytes; the truncated mutant is appropriately glycosylated and expressed at the cellular membrane, where it is non-functional. Mice generated with a targeted deletion of Slc12a6 have a locomotor deficit, peripheral neuropathy and a sensorimotor gating deficit, similar to the human disease. Our findings identify mutations in SLC12A6 as the genetic lesion underlying ACCPN and suggest a critical role for SLC12A6 in the development and maintenance of the nervous system.
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页码:384 / 392
页数:8
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