Literature DB >> 17993479

The structure of isolated cardiac Myosin thick filaments from cardiac Myosin binding protein-C knockout mice.

Robert W Kensler1, Samantha P Harris.   

Abstract

Mutations in the thick filament associated protein cardiac myosin binding protein-C (cMyBP-C) are a major cause of familial hypertrophic cardiomyopathy. Although cMyBP-C is thought to play both a structural and a regulatory role in the contraction of cardiac muscle, detailed information about the role of this protein in stability of the thick filament and maintenance of the ordered helical arrangement of the myosin cross-bridges is limited. To address these questions, the structure of myosin thick filaments isolated from the hearts of wild-type mice containing cMyBP-C (cMyBP-C(+/+)) were compared to those of cMyBP-C knockout mice lacking this protein (cMyBp-C(-/-)). The filaments from the knockout mice hearts lacking cMyBP-C are stable and similar in length and appearance to filaments from the wild-type mice hearts containing cMyBP-C. Both wild-type and many of the cMyBP-C(-/-) filaments display a distinct 43 nm periodicity. Fourier transforms of electron microscope images typically show helical layer lines to the sixth layer line, confirming the well-ordered arrangement of the cross-bridges in both sets of filaments. However, the "forbidden" meridional reflections, thought to derive from a perturbation from helical symmetry in the wild-type filament, are weaker or absent in the transforms of the cMyBP-C(-/-) myocardial thick filaments. In addition, the cross-bridge array in the absence of cMyBP-C appears more easily disordered.

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Year:  2007        PMID: 17993479      PMCID: PMC2242758          DOI: 10.1529/biophysj.107.115899

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  63 in total

1.  The M.ADP.Pi state is required for helical order in the thick filaments of skeletal muscle.

Authors:  S Xu; J Gu; T Rhodes; B Belknap; G Rosenbaum; G Offer; H White; L C Yu
Journal:  Biophys J       Date:  1999-11       Impact factor: 4.033

Review 2.  Cardiac myosin binding protein C.

Authors:  S Winegrad
Journal:  Circ Res       Date:  1999-05-28       Impact factor: 17.367

3.  Loaded shortening, power output, and rate of force redevelopment are increased with knockout of cardiac myosin binding protein-C.

Authors:  F Steven Korte; Kerry S McDonald; Samantha P Harris; Richard L Moss
Journal:  Circ Res       Date:  2003-09-18       Impact factor: 17.367

4.  Hypertrophic cardiomyopathy in cardiac myosin binding protein-C knockout mice.

Authors:  Samantha P Harris; Christopher R Bartley; Timothy A Hacker; Kerry S McDonald; Pamela S Douglas; Marion L Greaser; Patricia A Powers; Richard L Moss
Journal:  Circ Res       Date:  2002-03-22       Impact factor: 17.367

5.  Changes in cardiac contractility related to calcium-mediated changes in phosphorylation of myosin-binding protein C.

Authors:  G McClellan; I Kulikovskaya; S Winegrad
Journal:  Biophys J       Date:  2001-08       Impact factor: 4.033

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Journal:  Biochem J       Date:  1988-02-01       Impact factor: 3.857

Review 7.  Cardiac myosin binding protein C: its role in physiology and disease.

Authors:  Emily Flashman; Charles Redwood; Johanna Moolman-Smook; Hugh Watkins
Journal:  Circ Res       Date:  2004-05-28       Impact factor: 17.367

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Journal:  J Gen Physiol       Date:  1991-06       Impact factor: 4.086

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Journal:  J Cell Biol       Date:  1985-08       Impact factor: 10.539

10.  Phosphorylation of C-protein in intact amphibian cardiac muscle. Correlation between 32P incorporation and twitch relaxation.

Authors:  H C Hartzell
Journal:  J Gen Physiol       Date:  1984-04       Impact factor: 4.086

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  22 in total

Review 1.  Structure, interactions and function of the N-terminus of cardiac myosin binding protein C (MyBP-C): who does what, with what, and to whom?

Authors:  Mark Pfuhl; Mathias Gautel
Journal:  J Muscle Res Cell Motil       Date:  2012-04-20       Impact factor: 2.698

2.  Cardiac myosin binding protein-C is essential for thick-filament stability and flexural rigidity.

Authors:  Lori R Nyland; Bradley M Palmer; Zengyi Chen; David W Maughan; Christine E Seidman; J G Seidman; Laurent Kreplak; Jim O Vigoreaux
Journal:  Biophys J       Date:  2009-04-22       Impact factor: 4.033

3.  Cardiac myosin binding protein-C modulates actomyosin binding and kinetics in the in vitro motility assay.

Authors:  Walid Saber; Kelly J Begin; David M Warshaw; Peter VanBuren
Journal:  J Mol Cell Cardiol       Date:  2008-03-29       Impact factor: 5.000

4.  A new state of cardiac myosin with very slow ATP turnover: a potential cardioprotective mechanism in the heart.

Authors:  Pleuni Hooijman; Melanie A Stewart; Roger Cooke
Journal:  Biophys J       Date:  2011-04-20       Impact factor: 4.033

5.  The role of super-relaxed myosin in skeletal and cardiac muscle.

Authors:  James W McNamara; Amy Li; Cristobal G Dos Remedios; Roger Cooke
Journal:  Biophys Rev       Date:  2014-12-20

Review 6.  Muscle myosin filaments: cores, crowns and couplings.

Authors:  John M Squire
Journal:  Biophys Rev       Date:  2009-09-11

7.  Binding of the N-terminal fragment C0-C2 of cardiac MyBP-C to cardiac F-actin.

Authors:  Robert W Kensler; Justin F Shaffer; Samantha P Harris
Journal:  J Struct Biol       Date:  2010-12-14       Impact factor: 2.867

8.  Phosphorylation of cardiac myosin binding protein C releases myosin heads from the surface of cardiac thick filaments.

Authors:  Robert W Kensler; Roger Craig; Richard L Moss
Journal:  Proc Natl Acad Sci U S A       Date:  2017-02-06       Impact factor: 11.205

9.  Ablation of cardiac myosin binding protein-C disrupts the super-relaxed state of myosin in murine cardiomyocytes.

Authors:  James W McNamara; Amy Li; Nicola J Smith; Sean Lal; Robert M Graham; Kristina Bezold Kooiker; Sabine J van Dijk; Cristobal G Dos Remedios; Samantha P Harris; Roger Cooke
Journal:  J Mol Cell Cardiol       Date:  2016-03-26       Impact factor: 5.000

10.  Zebrafish cardiac muscle thick filaments: isolation technique and three-dimensional structure.

Authors:  Maryví González-Solá; Hind A Al-Khayat; Martine Behra; Robert W Kensler
Journal:  Biophys J       Date:  2014-04-15       Impact factor: 4.033

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