| Literature DB >> 22090316 |
Yassine Sassi1, Aniella Abi-Gerges, Jeremy Fauconnier, Nathalie Mougenot, Steven Reiken, Kobra Haghighi, Evangelia G Kranias, Andrew R Marks, Alain Lacampagne, Stefan Engelhardt, Stephane N Hatem, Anne-Marie Lompre, Jean-Sébastien Hulot.
Abstract
Recent studies indicate that members of the multidrug-resistance protein (MRP) family belonging to ATP binding cassette type C (ABCC) membrane proteins extrude cyclic nucleotides from various cell types. This study aimed to determine whether MRP proteins regulate cardiac cAMP homeostasis. Here, we demonstrate that MRP4 is the predominant isoform present at the plasma membrane of cardiacmyocytes and that it mediates the efflux of cAMP in these cells. MRP4-deficient mice displayed enhanced cardiac myocyte cAMP formation, contractility, and cardiac hypertrophy at 9 mo of age, an effect that was compensated transiently by increased phosphodiesterase expression at young age. These findings suggest that cAMP extrusion via MRP4 acts together with phosphodiesterases to control cAMP levels in cardiac myocytes.Entities:
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Year: 2011 PMID: 22090316 PMCID: PMC3289499 DOI: 10.1096/fj.11-194027
Source DB: PubMed Journal: FASEB J ISSN: 0892-6638 Impact factor: 5.191