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Volume 48, Issue 6, Pages 1206-1214 (June 2010)


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Post-translational regulation of calsarcin-1 during pressure overload-induced cardiac hypertrophy

Anna K. Paulsson1, Sarah Franklin1, Scherise A. Mitchell-Jordan, Shuxun Ren, Yibin Wang, Thomas M. VondriskaCorresponding Author Informationemail address

Received 3 September 2009; received in revised form 5 February 2010; accepted 7 February 2010. published online 18 February 2010.

Abstract 

Chronic pressure overload to the heart leads to cardiac hypertrophy and failure through processes that involve reorganization of subcellular compartments and alteration of established signaling mechanisms. To identify proteins contributing to this process, we examined changes in nuclear-associated myofilament proteins as the murine heart undergoes progressive hypertrophy following pressure overload. Calsarcin-1, a negative regulator of calcineurin signaling in the heart, was found to be enriched in cardiac nuclei and displays increased abundance following pressure overload through a mechanism that is decoupled from transcriptional regulation. Using proteomics, we identified novel processing of this protein in the setting of cardiac injury and identified four residues subject to modification by phosphorylation. These studies are the first to determine mechanisms regulating calsarcin abundance during hypertrophy and failure and reveal the first evidence of post-translational modifications of calsarcin-1 in the myocardium. Overall, the findings expand the roles of calsarcins to include nuclear tasks during cardiac growth.

Departments of Anesthesiology, Medicine and Physiology in the David Geffen School of Medicine, University of California, Los Angeles, CA, USA

Corresponding Author InformationCorresponding author. BH 557 CHS, Departments of Anesthesiology, Medicine and Physiology, David Geffen School of Medicine, UCLA, 650 Charles Young Dr., Los Angeles, CA 90095, USA.

1 These authors contributed equally to this study.

PII: S0022-2828(10)00044-1

doi:10.1016/j.yjmcc.2010.02.009


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