Sarcoplasmic reticulum calcium uptake and speed of relaxation are depressed in nebulin‐free skeletal muscle
- 19 March 2008
- journal article
- research article
- Published by Wiley in The FASEB Journal
- Vol. 22 (8) , 2912-2919
- https://doi.org/10.1096/fj.07-104372
Abstract
Previous work suggested that altered Ca(2+) homeostasis might contribute to dysfunction of nebulin-free muscle, as gene expression analysis revealed that the sarco(endo)plasmic reticulum Ca(2+)-ATPase (SERCA)-inhibitor sarcolipin (SLN) is up-regulated >70-fold in nebulin knockout mice, and here we tested this proposal. We investigated SLN protein expression in nebulin-free and wild-type skeletal muscle, as well as expression of other Ca(2+)-handling proteins. Ca(2+) uptake capacity was determined in isolated sarcoplasmic reticulum vesicles and in intact myofibers by measuring Ca(2+) transients. Muscle contractile performance was determined in skinned muscle activated with exogenous Ca(2+), as well as in electrically stimulated intact muscle. We found profound up-regulation of SLN protein in nebulin-free skeletal muscle, whereas expression of other Ca(2+)-handling proteins was not (calsequestrin and phospholamban) or was minimally (SERCA) affected. Speed of Ca(2+) uptake was >3-fold decreased in sarcoplasmic reticulum vesicles isolated from nebulin-free muscle as well as in nebulin-free intact myofibers. Ca(2+)-activated stress in skinned muscle and stress produced by intact nebulin-free muscle were reduced to a similar extent compared with wild type. Half-relaxation time was significantly longer in nebulin-free compared with wild-type muscle. Thus, the present study demonstrates for the first time that nebulin might also be involved in physiological Ca(2+) handling of the SR-myofibrillar system.Keywords
Funding Information
- Deutsche Forschungsgemeinschaft (WI 3278/1‐1, La668/10‐1)
- National Institutes of Health (AR-053897, HL-062881)
This publication has 27 references indexed in Scilit:
- Ablation of sarcolipin enhances sarcoplasmic reticulum calcium transport and atrial contractilityProceedings of the National Academy of Sciences, 2007
- Differential expression of sarcolipin protein during muscle development and cardiac pathophysiologyJournal of Molecular and Cellular Cardiology, 2007
- New perspectives on the role of SERCA2's Ca2+ affinity in cardiac functionBiochimica et Biophysica Acta (BBA) - Molecular Cell Research, 2006
- Measurement of sub-membrane [Ca2+] in adult myofibers and cytosolic [Ca2+] in myotubes from normal and mdx mice using the Ca2+ indicator FFP-18Cell Calcium, 2006
- Nebulin regulates thin filament length, contractility, and Z-disk structure in vivoThe EMBO Journal, 2006
- Nebulin-deficient mice exhibit shorter thin filament lengths and reduced contractile function in skeletal muscleThe Journal of cell biology, 2006
- Targeted Overexpression of Sarcolipin in the Mouse Heart Decreases Sarcoplasmic Reticulum Calcium Transport and Cardiac ContractilityJournal of Biological Chemistry, 2006
- Mitochondrial function in intact skeletal muscle fibres of creatine kinase deficient miceThe Journal of Physiology, 2003
- Mitochondrial function in intact skeletal muscle fibres of creatine kinase deficient miceThe Journal of Physiology, 2003
- Sarcolipin Overexpression in Rat Slow Twitch Muscle Inhibits Sarcoplasmic Reticulum Ca2+ Uptake and Impairs Contractile FunctionPublished by Elsevier ,2002