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Selective phosphorylation of PKA targets after β-adrenergic receptor stimulation impairs myofilament function in Mybpc3-targeted HCM mouse model.

Publication ,  Journal Article
Najafi, A; Sequeira, V; Helmes, M; Bollen, IAE; Goebel, M; Regan, JA; Carrier, L; Kuster, DWD; Van Der Velden, J
Published in: Cardiovascular research
May 2016

Hypertrophic cardiomyopathy (HCM) has been associated with reduced β-adrenergic receptor (β-AR) signalling, leading downstream to a low protein kinase A (PKA)-mediated phosphorylation. It remained undefined whether all PKA targets will be affected similarly by diminished β-AR signalling in HCM. We aimed to investigate the role of β-AR signalling on regulating myofilament and calcium handling in an HCM mouse model harbouring a gene mutation (G > A transition on the last nucleotide of exon 6) in Mybpc3 encoding cardiac myosin-binding protein C.Cardiomyocyte contractile properties and phosphorylation state were measured in left ventricular permeabilized and intact cardiomyocytes isolated from heterozygous (HET) or homozygous (KI) Mybpc3-targeted knock-in mice. Significantly higher myofilament Ca²⁺sensitivity and passive tension were detected in KI mice, which were normalized after PKA treatment. Loaded intact cardiomyocyte force-sarcomere length relation was impaired in both HET and KI mice, suggesting a reduced length-dependent activation. Unloaded cardiomyocyte function revealed an impaired myofilament contractile response to isoprenaline (ISO) in KI, whereas the calcium-handling response to ISO was maintained. This disparity was explained by an attenuated increase in cardiac troponin I (cTnI) phosphorylation in KI, whereas the increase in phospholamban (PLN) phosphorylation was maintained to wild-type values.These data provide evidence that in the KI HCM mouse model, β-AR stimulation leads to preferential PKA phosphorylation of PLN over cTnI, resulting in an impaired inotropic and lusitropic response.

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Published In

Cardiovascular research

DOI

EISSN

1755-3245

ISSN

0008-6363

Publication Date

May 2016

Volume

110

Issue

2

Start / End Page

200 / 214

Related Subject Headings

  • Sarcomeres
  • Receptors, Adrenergic, beta
  • Phosphorylation
  • Myofibrils
  • Myocytes, Cardiac
  • Myocardium
  • Myocardial Contraction
  • Mice
  • Male
  • Isoproterenol
 

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Najafi, A., Sequeira, V., Helmes, M., Bollen, I. A. E., Goebel, M., Regan, J. A., … Van Der Velden, J. (2016). Selective phosphorylation of PKA targets after β-adrenergic receptor stimulation impairs myofilament function in Mybpc3-targeted HCM mouse model. Cardiovascular Research, 110(2), 200–214. https://doi.org/10.1093/cvr/cvw026
Najafi, Aref, Vasco Sequeira, Michiel Helmes, Ilse A. E. Bollen, Max Goebel, Jessica A. Regan, Lucie Carrier, Diederik W. D. Kuster, and Jolanda Van Der Velden. “Selective phosphorylation of PKA targets after β-adrenergic receptor stimulation impairs myofilament function in Mybpc3-targeted HCM mouse model.Cardiovascular Research 110, no. 2 (May 2016): 200–214. https://doi.org/10.1093/cvr/cvw026.
Najafi A, Sequeira V, Helmes M, Bollen IAE, Goebel M, Regan JA, et al. Selective phosphorylation of PKA targets after β-adrenergic receptor stimulation impairs myofilament function in Mybpc3-targeted HCM mouse model. Cardiovascular research. 2016 May;110(2):200–14.
Najafi, Aref, et al. “Selective phosphorylation of PKA targets after β-adrenergic receptor stimulation impairs myofilament function in Mybpc3-targeted HCM mouse model.Cardiovascular Research, vol. 110, no. 2, May 2016, pp. 200–14. Epmc, doi:10.1093/cvr/cvw026.
Najafi A, Sequeira V, Helmes M, Bollen IAE, Goebel M, Regan JA, Carrier L, Kuster DWD, Van Der Velden J. Selective phosphorylation of PKA targets after β-adrenergic receptor stimulation impairs myofilament function in Mybpc3-targeted HCM mouse model. Cardiovascular research. 2016 May;110(2):200–214.
Journal cover image

Published In

Cardiovascular research

DOI

EISSN

1755-3245

ISSN

0008-6363

Publication Date

May 2016

Volume

110

Issue

2

Start / End Page

200 / 214

Related Subject Headings

  • Sarcomeres
  • Receptors, Adrenergic, beta
  • Phosphorylation
  • Myofibrils
  • Myocytes, Cardiac
  • Myocardium
  • Myocardial Contraction
  • Mice
  • Male
  • Isoproterenol