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February 1, 2000AJP Heart and Circulatory Physiology145 citations

Expression of the β (slow)-isoform of MHC in the adult mouse heart causes dominant-negative functional effects

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JTJil C. TardiffTHTimothy E. HewettSFStephen M. Factor

Structured PICO

Does genetic expression of the beta-isoform of MHC decrease cardiac contractility in adult mouse hearts?

P
Population
Adult mouse heart model (transgenic mouse lines)
I
Intervention
Genetic alteration to express a Myc-tagged beta-MHC molecule (the slower motor) in adult ventricular tissue (12% of myosin as transgene)
C
Comparator
Normal adult mouse ventricles expressing only alpha-MHC
O
Outcome
Changes in cardiac chamber mass and contractility (myofibrillar Ca(2+)-activated ATPase activity and systolic function)surrogate

Even small shifts in the myosin isoform composition of the myocardium (such as 12% beta-MHC expression) can result in physiologically significant decreases in cardiac contractility without inducing hypertrophy.

Abstract

Alpha- and beta-myosin heavy chain (MHC), the two MHC isoforms expressed in the mammalian heart, differ quantitatively in their enzymatic activities. The MHC composition of the heart can change dramatically in response to numerous stimuli, leading to the hypothesis that changes in cardiac function can be caused by myosin isoform shifts. However, this hypothesis has remained unproven because the stimuli used to generate these shifts are complex and accompanied by many additional physiological changes, including alterations in cardiac mass and geometry. Adult mouse ventricles normally express only alpha-MHC (the faster motor). To determine whether genetic alteration of the MHC isoform composition in the adult mouse heart would result in changes in cardiac chamber mass and contractility, we established transgenic mouse lines that express a Myc-tagged beta-MHC molecule (the slower motor) in adult ventricular tissue, one of which expresses 12% of its myosin as the transgene. There is no evidence of hypertrophy, induction of hypertrophic markers, and no histopathology. Myofibrillar Ca(2+)-activated ATPase activity is decreased by 23%, and Langendorff preparations demonstrate a significant 15% decrease in systolic function in transgenic hearts. These results suggest that even small shifts in the myosin isoform composition of the myocardium can result in physiologically significant changes in cardiac contractility and could be relevant to cardiovascular disease.

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Cite This Study

Tardiff et al. (2000) studied this question.

synapsesocial.com/papers/69d8f7181ab91f1400beddeehttps://doi.org/10.1152/ajpheart.2000.278.2.h412
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