A molecular analysis of the Na(+)-independent cation chloride cotransporters.

Kenneth B Gagnon, Mauricio Di Fulvio

Journal: Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology 2014;32(7):14-31

PMID: 24429812

Abstract

The homologous genes encoding the electroneutral solute carrier family 12A (SLC12A) were identified more than 20 years ago, however, over the last few years, it has become clear that each of the genes within this family potentially encode for more than one cation-chloride cotransporter (CCC). Even more surprising, despite more than 30 years of functional studies and a wealth of knowledge on the activators, inhibitors, ion affinities, and kinetics of these cotransporters, we still cannot sufficiently explain why some cells express only one CCC isoform, while others express two, three, or more CCC isoforms. In 2009, Drs. Alvarez-Leefmans and Di Fulvio published an extensive in silico molecular analysis of the potential splice variants of the Na(+)-dependent cation-chloride cotransporters. In this review, we will look at the exceptionally large variety of potential splice variants within the Na(+)-independent cation-chloride cotransporter (SLC12A4-SLC12A7) genes, their initial tissue identification, and their physiological relevance.

© 2014 S. Karger AG, Basel.

Address: Department of Anatomy and Cell Biology, University of Saskatchewan, Saskatoon, SK, Canada.

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