Literature DB >> 1387292

Sliding velocity of isolated rabbit cardiac myosin correlates with isozyme distribution.

H Yamashita1, S Sugiura, T Serizawa, T Sugimoto, M Iizuka, E Katayama, T Shimmen.   

Abstract

To investigate the relationship between the mechanical and biochemical properties of cardiac myosin, the sliding velocity of isolated cardiac myosin obtained from both euthyroid and hyperthyroid rabbits on actin cables was measured with an in vitro motility assay system. Ten rabbits (T) were treated with L-thyroxine to induce hyperthyroidism, and eight nontreated animals (N) were used as controls. Myosin was purified from the left ventricles of anesthetized animals. Myosin isozyme content was analyzed by the pyrophosphate gel electrophoresis method, and myosin adenosinetriphosphatase (ATPase) activity was determined on the same sample. Long well-organized actin cables of green algae, Nitellopsis, were used in the in vitro motility assay. Small latex beads were coated with purified cardiac myosin and introduced onto the Nitellopsis actin cables. Active unidirectional movement of the beads on the actin cables was observed under a photomicroscope, and the velocity was measured. The velocity was dependent on ATP concentrations, and the optimal pH for bead movement was approximately 7.0-7.5. The mean velocity was higher in T than in N (0.66 +/- 0.12 vs. 0.32 +/- 0.09 micron/s, P less than 0.01). Both Ca(2+)-activated ATPase activity and the percentage of alpha-myosin heavy chain were also higher in T than in N (0.691 +/- 0.072 vs. 0.335 +/- 0.072 microM Pi.mg-1.min-1, P less than 0.01, and 79 +/- 12 vs. 26 +/- 7%, P less than 0.01, respectively). The velocity of myosin closely correlated with both Ca(+2)-activated myosin ATPase activity (r = 0.87, P less than 0.01) and the percentage of alpha-myosin heavy chain (r = 0.87, P less than 0.01).

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Year:  1992        PMID: 1387292     DOI: 10.1152/ajpheart.1992.263.2.H464

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  10 in total

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Authors:  G Cuda; L Fananapazir; N D Epstein; J R Sellers
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3.  In vitro actin filament sliding velocities produced by mixtures of different types of myosin.

Authors:  G Cuda; E Pate; R Cooke; J R Sellers
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4.  Shifts in the myosin heavy chain isozymes in the mouse heart result in increased energy efficiency.

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5.  Smooth, cardiac and skeletal muscle myosin force and motion generation assessed by cross-bridge mechanical interactions in vitro.

Authors:  D E Harris; S S Work; R K Wright; N R Alpert; D M Warshaw
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Review 6.  Insights into human beta-cardiac myosin function from single molecule and single cell studies.

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7.  Actomyosin kinetics of pure fast and slow rat myosin isoforms studied by in vitro motility assay approach.

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8.  Depressed sliding velocity of isolated cardiac myosin from cardiomyopathic hamsters: evidence for an alteration in mechanical interaction of actomyosin.

Authors:  H Yamashita; S Sugiura; M Sata; T Serizawa; M Iizuka; T Shimmen; S Momomura
Journal:  Mol Cell Biochem       Date:  1993-02-17       Impact factor: 3.396

9.  Effect of low pH on single skeletal muscle myosin mechanics and kinetics.

Authors:  E P Debold; S E Beck; D M Warshaw
Journal:  Am J Physiol Cell Physiol       Date:  2008-05-14       Impact factor: 4.249

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  10 in total

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