Key result
Overexpression of MR-1 in neonatal rat cardiomyocytes significantly increased cell size (18,487.9 vs 8,998.2 µm2) and protein synthesis, inducing hypertrophy via sarcomere organization.
Absolute Event Rate: 18487.9% vs 8998.2%
p-value: p=<0.05
Overexpression of MR-1 induces cardiomyocyte hypertrophy by promoting myomesin-1-mediated sarcomere organization.
MR-1 may drive time-dependent cardiomyocyte hypertrophy; leaves open its role in human disease.
Human myofibrillogenesis regulator 1, a novel 17-kDa protein, is closely involved in cardiac hypertrophy. We studied the molecular mechanism that links MR-1 to hypertrophic response. Hypertrophic hallmarks such as cell size and [(3)H]-leucine incorporation were significantly increased when MR-1 was transfected into cardiomyocytes for 48 h. However, sarcomere organization was promoted when MR-1 was transfected for 8 h. The finding that cardiac hypertrophy was induced long after increase of sarcomere organization indicates that the promoted sarcomere organization may be one of the crucial factors causing hypertrophy. Furthermore, when MR-1 was transfected into cardiomyocytes, the nuclear localization of myomesin-1 was shifted to the cytoplasm. Transfection with small ubiquitin-like modifier-1 (SUMO-1) mimicked the effect of MR-1 inducing translocation of myomesin-1. However, transfection with SUMO-1 in MR-1-silenced cardiomyocytes failed to induce translocation and sarcomere organization, even though SUMO-1 expression was at the same level. Overexpression of MR-1 may induce cardiomyocyte hypertrophy via myomesin-1-mediated sarcomere organization.
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Wang et al. (2012) studied Cardiac hypertrophy. MR-1 overexpression (pcDNA3.1-hMR1 transfection) vs. Vector control (pcDNA3.1) was evaluated on Cell size (µm2) at 48 hours (p=<0.05). Overexpression of MR-1 in neonatal rat cardiomyocytes significantly increased cell size (18,487.9 vs 8,998.2 µm2) and protein synthesis, inducing hypertrophy via sarcomere organization.
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