| Literature DB >> 19661061 |
Lin Xu1, Christiana S Kappler, Santhosh K Mani, Neal R Shepherd, Ludivine Renaud, Paige Snider, Simon J Conway, Donald R Menick.
Abstract
The NCX1 (sodium-calcium exchanger) is up-regulated in human heart failure and in many animal models of heart failure. The potential benefits and risks of therapeutically blocking NCX1 in heart failure and during ischemia-reperfusion are being actively investigated. In this study, we demonstrate that prolonged administration of the NCX1 inhibitor KB-R7943 resulted in the up-regulation of Ncx1 gene expression in both isolated adult cardiomyocytes and intact mouse hearts. Ncx1 up-regulation is mediated by the activation of p38. Importantly, p38 is not activated by KB-R7943 treatment in heart tubes from Ncx1(-/-) mice at 9.5 days postcoitum but is activated in heart tubes from Ncx1(+/+) mice. p38 activation does not appear to be in response to changes in cytosolic calcium concentration, [Ca(2+)](i). Interestingly, chronic KB-R7943 treatment in mice leads to the formation of an NCX1-p38 complex. Our study demonstrates for the first time that the electrogenic sarcolemma membrane cardiac NCX1 can act as a regulator of "activity-dependent signal transduction" leading to changes in gene expression.Entities:
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Year: 2009 PMID: 19661061 PMCID: PMC2785654 DOI: 10.1074/jbc.M109.022855
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157