Mutations in the motor domain modulate myosin activity and myofibril organization
Open Access
- 15 October 2003
- journal article
- Published by The Company of Biologists in Journal of Cell Science
- Vol. 116 (20), 4227-4238
- https://doi.org/10.1242/jcs.00709
Abstract
We have investigated the functional impact on cardiac myofibril organization and myosin motor activity of point mutations associated with familial hypertrophic cardiomyopathies (FHC). Embryonic chicken cardiomyocytes were transfected with vectors encoding green fluorescent protein (GFP) fused to a striated muscle myosin heavy chain (GFP-myosin). Within 24 hours of transfection, the GFP-myosin is found co-assembled with the endogenous myosin in striated myofibrils. The wild-type GFP-myosin had no effect on the organization of the contractile cytoskeleton of the cardiomyocytes. However, expression of myosin with the R403Q FHC mutation resulted in a small but significant decrease in myofibril organization, and the R453C and G584R mutations caused a more dramatic increase in myofibril disarray. The embryonic cardiomyocytes beat spontaneously in culture and this was not affected by expression of the wild-type or mutant GFP-myosin. For the biochemical analysis of myosin motor activity, replication defective adenovirus was used to express the wild-type and mutant GFP-myosin in C2C12 myotubes. The R403Q mutation enhanced actin filament velocity but had no effect on the myosin duty ratio. The R453C and G584R mutations impaired actin filament movement and both increased the duty ratio. The effects of these mutations on myosin motor activity correlate with changes in myofibril organization of live cardiomyocytes. Thus, mutations associated with hypertrophic cardiomyopathies that alter myosin motor activity can also impair myofibril organization.Keywords
This publication has 52 references indexed in Scilit:
- N232S, G741R and D778G β-cardiac myosin mutants, implicated in familial hypertrophic cardiomyopathy, do not disrupt myofibrillar organisation in cultured myotubesFEBS Letters, 2000
- A transgenic rabbit model for human hypertrophic cardiomyopathyJournal of Clinical Investigation, 1999
- Mutations that suppress the thermosensitivity of green fluorescent proteinCurrent Biology, 1996
- Abnormal contractile properties of muscle fibers expressing beta-myosin heavy chain gene mutations in patients with hypertrophic cardiomyopathy.Journal of Clinical Investigation, 1995
- Comparison of indapamide and hydrochlorothiazide on spontaneous contraction of cardiomyocytes in culture: The effect on alterations of extracellular calcium or potassiumGeneral Pharmacology: The Vascular System, 1993
- A series of normal stages in the development of the chick embryoDevelopmental Dynamics, 1992
- Mechanochemical coupling in actomyosin energy transduction studied by in vitro movement assayJournal of Molecular Biology, 1990
- A molecular basis for familial hypertrophic cardiomyopathy: A β cardiac myosin heavy chain gene missense mutationCell, 1990
- Myosin step sizeJournal of Molecular Biology, 1990
- Myocardial Ultrastructure in Idiopathic Hypertrophic Subaortic StenosisCirculation, 1972