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Publication : Myosin light chain replacement in the heart.

First Author  Sanbe A Year  2000
Journal  Am J Physiol Heart Circ Physiol Volume  279
Issue  3 Pages  H1355-64
PubMed ID  10993803 Mgi Jnum  J:64887
Mgi Id  MGI:1890088 Doi  10.1152/ajpheart.2000.279.3.H1355
Citation  Sanbe A, et al. (2000) Myosin light chain replacement in the heart. Am J Physiol Heart Circ Physiol 279(3):H1355-64
abstractText  Myosin-actin cross-bridge kinetics are an important determinant for cardiac systolic and diastolic function. We compared the effects of myosin light chain substitutions on the ability of the fibers to contract in response to calcium and in their ability to produce power. Transgenesis was used to effect essentially complete replacement of the target contractile protein isoform specifically in the heart. Atrial and ventricular fibers derived from the various transgenic (TG) lines were skinned, and the force-velocity relationships, unloaded shortening velocities, and Ca(2+)-stimulated Mg(2+)-ATPase activities were determined. Replacement with an ectopic isoform resulted in significant changes in cross-bridge cycling kinetics but without any overt effects on morbidity or mortality. To confirm that this result was not light chain specific, a modified alpha-myosin heavy chain isoform that resulted in significant changes in force development was also engineered. The animals appeared healthy and have normal lifespans, and the changes in force development did not result in significant remodeling or overt hypertrophy. We conclude that myosin light chains can control aspects of cross-bridge cycling and alter force development. The myosin heavy chain data also show that changes in the kinetics of force development and power output do not necessarily lead to activation of the hypertrophic response or significant cardiac remodeling.
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