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Carbonic anhydrase 5 regulates acid-base homeostasis in zebrafish.

Ruben Postel ,
Arnoud Sonnenberg

Abstract

The regulation of the acid-base balance in cells is essential for proper cellular homeostasis. Disturbed acid-base balance directly affects cellular physiology, which often results in various pathological conditions. In every living organism, the protein family of carbonic anhydrases regulate a broad variety of homeostatic processes. Here we describe the identification, mapping and cloning of a zebrafish carbonic anhydrase 5 (ca5) mutation, collapse of fins (cof), which causes initially a collapse of the medial fins followed by necrosis and rapid degeneration of the embryo. These phenotypical characteristics can be mimicked in wild-type embryos by acetazolamide treatment, suggesting that CA5 activity in zebrafish is essential for a proper development. In addition we show that CA5 regulates acid-base balance during embryonic development, since lowering the pH can compensate for the loss of CA5 activity. Identification of selective modulators of CA5 activity could have a major impact on the development of new therapeutics involved in the treatment of a variety of disorders.

More about this publication

PloS one

Volume 7
Issue nr. 6
Pages e39881
Publication date 30-06-2012

Full text links

Publisher website (DOI) 10.1371/journal.pone.0039881
Europe PubMed Central 22745834
Pubmed 22745834

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