Literature DB >> 23798412

Molecular consequences of the R453C hypertrophic cardiomyopathy mutation on human β-cardiac myosin motor function.

Ruth F Sommese1, Jongmin Sung, Suman Nag, Shirley Sutton, John C Deacon, Elizabeth Choe, Leslie A Leinwand, Kathleen Ruppel, James A Spudich.   

Abstract

Cardiovascular disorders are the leading cause of morbidity and mortality in the developed world, and hypertrophic cardiomyopathy (HCM) is among the most frequently occurring inherited cardiac disorders. HCM is caused by mutations in the genes encoding the fundamental force-generating machinery of the cardiac muscle, including β-cardiac myosin. Here, we present a biomechanical analysis of the HCM-causing mutation, R453C, in the context of human β-cardiac myosin. We found that this mutation causes a ∼30% decrease in the maximum ATPase of the human β-cardiac subfragment 1, the motor domain of myosin, and a similar percent decrease in the in vitro velocity. The major change in the R453C human β-cardiac subfragment 1 is a 50% increase in the intrinsic force of the motor compared with wild type, with no appreciable change in the stroke size, as observed with a dual-beam optical trap. These results predict that the overall force of the ensemble of myosin molecules in the muscle should be higher in the R453C mutant compared with wild type. Loaded in vitro motility assay confirms that the net force in the ensemble is indeed increased. Overall, this study suggests that the R453C mutation should result in a hypercontractile state in the heart muscle.

Entities:  

Keywords:  heart disease; optical trapping; single-molecule force measurements

Mesh:

Substances:

Year:  2013        PMID: 23798412      PMCID: PMC3732973          DOI: 10.1073/pnas.1309493110

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  33 in total

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Authors:  Pierre-Damien Coureux; H Lee Sweeney; Anne Houdusse
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Authors:  Radhakrishnan Ramaraj
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Journal:  Circ Res       Date:  2000-04-14       Impact factor: 17.367

6.  Differential cross-bridge kinetics of FHC myosin mutations R403Q and R453C in heterozygous mouse myocardium.

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Journal:  Nat Cell Biol       Date:  2003-10-26       Impact factor: 28.824

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Journal:  J Clin Invest       Date:  1993-06       Impact factor: 14.808

Review 9.  Actin-based motility assay.

Authors:  Christophe Le Clainche; Marie-France Carlier
Journal:  Curr Protoc Cell Biol       Date:  2004-10

10.  Expression of human plasma gelsolin in Escherichia coli and dissection of actin binding sites by segmental deletion mutagenesis.

Authors:  M Way; J Gooch; B Pope; A G Weeds
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  83 in total

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2.  Biological machines: Molecular motor teamwork.

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3.  Omecamtiv Mecarbil Enhances the Duty Ratio of Human β-Cardiac Myosin Resulting in Increased Calcium Sensitivity and Slowed Force Development in Cardiac Muscle.

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Journal:  J Biol Chem       Date:  2017-01-12       Impact factor: 5.157

4.  Mutation that causes hypertrophic cardiomyopathy increases force production in human β-cardiac myosin.

Authors:  Joseph M Muretta; David D Thomas
Journal:  Proc Natl Acad Sci U S A       Date:  2013-07-12       Impact factor: 11.205

5.  A small-molecule inhibitor of sarcomere contractility suppresses hypertrophic cardiomyopathy in mice.

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Journal:  Science       Date:  2016-02-05       Impact factor: 47.728

6.  CaATP prolongs strong actomyosin binding and promotes futile myosin stroke.

Authors:  Jinghua Ge; Akhil Gargey; Irina V Nesmelova; Yuri E Nesmelov
Journal:  J Muscle Res Cell Motil       Date:  2019-09-25       Impact factor: 2.698

7.  How to Measure Load-Dependent Kinetics of Individual Motor Molecules Without a Force-Clamp.

Authors:  J Sung; K I Mortensen; J A Spudich; H Flyvbjerg
Journal:  Methods Enzymol       Date:  2016-10-31       Impact factor: 1.600

Review 8.  Strategies for targeting the cardiac sarcomere: avenues for novel drug discovery.

Authors:  Joshua B Holmes; Chang Yoon Doh; Ranganath Mamidi; Jiayang Li; Julian E Stelzer
Journal:  Expert Opin Drug Discov       Date:  2020-02-18       Impact factor: 6.098

9.  Genetic background of Japanese patients with pediatric hypertrophic and restrictive cardiomyopathy.

Authors:  Takeharu Hayashi; Kousuke Tanimoto; Kayoko Hirayama-Yamada; Etsuko Tsuda; Mamoru Ayusawa; Shinichi Nunoda; Akira Hosaki; Akinori Kimura
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10.  Direct real-time detection of the structural and biochemical events in the myosin power stroke.

Authors:  Joseph M Muretta; John A Rohde; Daniel O Johnsrud; Sinziana Cornea; David D Thomas
Journal:  Proc Natl Acad Sci U S A       Date:  2015-11-02       Impact factor: 11.205

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