Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/24084
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dc.contributor.authorToepfer, C-
dc.contributor.authorCaorsi, V-
dc.contributor.authorKampourakis, T-
dc.contributor.authorSikkel, MB-
dc.contributor.authorWest, TG-
dc.contributor.authorLeung, M-C-
dc.contributor.authorAl-Saud, SA-
dc.contributor.authorMacLeod, KT-
dc.contributor.authorLyon, AR-
dc.contributor.authorMarston, SB-
dc.contributor.authorSellers, JR-
dc.contributor.authorFerenczi, MA-
dc.date.accessioned2022-02-08T13:51:18Z-
dc.date.available2022-02-08T13:51:18Z-
dc.date.issued2013-05-10-
dc.identifier.citationToepfer, C., Caorsi, V., Kampourakis, T., Sikkel, M.B., West, T.G., Leung, M.-C., Al-Saud, S.A., MacLeod, K.T., Lyon, A.R., Marston, S.B., Sellers, J.R. and Ferenczi, M.A. (2013) 'Myosin Regulatory Light Chain (RLC) Phosphorylation Change as a Modulator of Cardiac Muscle Contraction in Disease', Journal of Biological Chemistry, 288 (19), pp. 13446 - 13454. doi: 10.1074/jbc.m113.455444.en_US
dc.identifier.issn0021-9258-
dc.identifier.urihttps://bura.brunel.ac.uk/handle/2438/24084-
dc.descriptionAuthor’s Choice—Final version full access.en_US
dc.description.abstractUnderstanding how cardiac myosin regulatory light chain (RLC) phosphorylation alters cardiac muscle mechanics is important because it is often altered in cardiac disease. The effect this protein phosphorylation has on muscle mechanics during a physiological range of shortening velocities, during which the heart generates power and performs work, has not been addressed. We have expressed and phosphorylated recombinant Rattus norvegicus left ventricular RLC. In vitro we have phosphorylated these recombinant species with cardiac myosin light chain kinase and zipper-interacting protein kinase. We compare rat permeabilized cardiac trabeculae, which have undergone exchange with differently phosphorylated RLC species. We were able to enrich trabecular RLC phosphorylation by 40% compared with controls and, in a separate series, lower RLC phosphorylation to 60% of control values. Compared with the trabeculae with a low level of RLC phosphorylation, RLC phosphorylation enrichment increased isometric force by more than 3-fold and peak power output by more than 7-fold and approximately doubled both maximum shortening speed and the shortening velocity that generated peak power. We augmented these measurements by observing increased RLC phosphorylation of human and rat HF samples from endocardial left ventricular homogenate. These results demonstrate the importance of increased RLC phosphorylation in the up-regulation of myocardial performance and suggest that reduced RLC phosphorylation is a key aspect of impaired contractile function in the diseased myocardium.en_US
dc.description.sponsorshipNational Institutes of Health, NHLBI Grant HL004232 12; Wellcome Trust Grants 091460/Z/10/Z, 092852/Z/10/Z, 092852/Z/10/Z; Biotechnology and Biological Sciences Research Council Grant BB/I019448/1; The British Heart Foundation.en_US
dc.format.extent13446 - 13454 (9)-
dc.format.mediumPrint-Electronic-
dc.languageEnglish-
dc.language.isoen_USen_US
dc.publisherElsevier BVen_US
dc.rights© 2013 ASBMB. Currently published by Elsevier Inc; originally published by American Society for Biochemistry and Molecular Biology under a User License Creative Commons Attribution (CC BY 4.0).-
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/-
dc.subjectcardiac muscleen_US
dc.subjectmuscleen_US
dc.subjectmyosinen_US
dc.subjectphosphorylationen_US
dc.subjectphysiologyen_US
dc.titleMyosin Regulatory Light Chain (RLC) Phosphorylation Change as a Modulator of Cardiac Muscle Contraction in Diseaseen_US
dc.typeArticleen_US
dc.identifier.doihttps://doi.org/10.1074/jbc.m113.455444-
dc.relation.isPartOfJournal of Biological Chemistry-
pubs.issue19-
pubs.publication-statusPublished-
pubs.volume288-
dc.identifier.eissn1083-351X-
Appears in Collections:Dept of Health Sciences Research Papers

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