The mutations in the CLCNKB gene encoding the ClC-Kb chloride channel are responsible for Bartter syndrome type 3, one of the four variants of Bartter syndrome in the genetically based nomenclature. All forms of Bartter syndrome are characterized by hypokalemia, metabolic alkalosis, and secondary hyperaldosteronism, but Bartter syndrome type 3 has the most heterogeneous presentation, extending from severe to very mild. A relatively large number of CLCNKB mutations have been reported, including gene deletions and nonsense or missense mutations. However, only 20 CLCNKB mutations have been functionally analyzed, due to technical difficulties regarding ClC-Kb functional expression in heterologous systems. This review provides an overview of rec...
A novel mutation in the chloride channel gene, CLCNKB, as a cause of Gitelman and Bartter syndromes....
Recent studies of hereditary renal tubular disorders have facilitated the identification and roles o...
BACKGROUND: ClC-Kb and ClC-Ka are homologous chloride channels that facilitate chloride homeostasis ...
International audienceThe mutations in the CLCNKB gene encoding the ClC-Kb chloride channel are resp...
Type III and IV Bartter syndromes (BS) are rare kidney tubulopathies caused by loss-of-function muta...
International audiencePathological missense mutations in CLCNKB gene give a wide spectrum of clinica...
Abstract: Bartter syndrome (BS) is a group of uncommon genetic disorders of reabsorption of salt...
International audienceClC-Kb, a member of the ClC family of Cl(-) channels/transporters, plays a maj...
Recent advances in molecular biology have characterised a new class of chloride channels that are re...
International audienceClC-Kb, a member of the ClC family of Cl(-) channels/transporters, plays a maj...
Bartter's syndrome type III results from loss-of-function mutations in the CLCNKB gene that encodes ...
ClC-K chloride channels are crucial for auditory transduction and urine concentration. Mutations in ...
Recent advances in molecular biology have characterised a new class of chloride channels (CLCs) that...
Type III Bartter syndrome (BS) is an autosomal recessive renal tubule disorder caused by loss-of-fun...
<div><p>Introduction</p><p>Type III Bartter syndrome (BS) is an autosomal recessive renal tubule dis...
A novel mutation in the chloride channel gene, CLCNKB, as a cause of Gitelman and Bartter syndromes....
Recent studies of hereditary renal tubular disorders have facilitated the identification and roles o...
BACKGROUND: ClC-Kb and ClC-Ka are homologous chloride channels that facilitate chloride homeostasis ...
International audienceThe mutations in the CLCNKB gene encoding the ClC-Kb chloride channel are resp...
Type III and IV Bartter syndromes (BS) are rare kidney tubulopathies caused by loss-of-function muta...
International audiencePathological missense mutations in CLCNKB gene give a wide spectrum of clinica...
Abstract: Bartter syndrome (BS) is a group of uncommon genetic disorders of reabsorption of salt...
International audienceClC-Kb, a member of the ClC family of Cl(-) channels/transporters, plays a maj...
Recent advances in molecular biology have characterised a new class of chloride channels that are re...
International audienceClC-Kb, a member of the ClC family of Cl(-) channels/transporters, plays a maj...
Bartter's syndrome type III results from loss-of-function mutations in the CLCNKB gene that encodes ...
ClC-K chloride channels are crucial for auditory transduction and urine concentration. Mutations in ...
Recent advances in molecular biology have characterised a new class of chloride channels (CLCs) that...
Type III Bartter syndrome (BS) is an autosomal recessive renal tubule disorder caused by loss-of-fun...
<div><p>Introduction</p><p>Type III Bartter syndrome (BS) is an autosomal recessive renal tubule dis...
A novel mutation in the chloride channel gene, CLCNKB, as a cause of Gitelman and Bartter syndromes....
Recent studies of hereditary renal tubular disorders have facilitated the identification and roles o...
BACKGROUND: ClC-Kb and ClC-Ka are homologous chloride channels that facilitate chloride homeostasis ...