Force development and intracellular Ca2+ in intact cardiac muscles from gravin mutant mice

Eur J Pharmacol. 2017 Jul 15:807:117-126. doi: 10.1016/j.ejphar.2017.04.020. Epub 2017 Apr 17.

Abstract

Gravin (AKAP12) is an A-kinase-anchoring-protein that scaffolds protein kinase A (PKA), β2-adrenergic receptor (β2-AR), protein phosphatase 2B and protein kinase C. Gravin facilitates β2-AR-dependent signal transduction through PKA to modulate cardiac excitation-contraction coupling and its removal positively affects cardiac contraction. Trabeculae from the right ventricles of gravin mutant (gravin-t/t) mice were employed for force determination. Simultaneously, corresponding intracellular Ca2+ transient ([Ca2+]i) were measured. Twitch force (Tf)-interval relationship, [Ca2+]i-interval relationship, and the rate of decay of post-extrasysolic potentiation (Rf) were also obtained. Western blot analysis were performed to correlate sarcomeric protein expression with alterations in calcium cycling between the WT and gravin-t/t hearts. Gravin-t/t muscles had similar developed force compared to WT muscles despite having lower [Ca2+]i at any given external Ca2+ concentration ([Ca2+]o). The time to peak force and peak [Ca2+]i were slower and the time to 75% relaxation was significantly prolonged in gravin-t/t muscles. Both Tf-interval and [Ca2+]i-interval relations were depressed in gravin-t/t muscles. Rf, however, did not change. Furthermore, Western blot analysis revealed decreased ryanodine receptor (RyR2) phosphorylation in gravin-t/t hearts. Gravin-t/t cardiac muscle exhibits increased force development in responsiveness to Ca2+. The Ca2+ cycling across the SR appears to be unaltered in gravin-t/t muscle. Our study suggests that gravin is an important component of cardiac contraction regulation via increasing myofilament sensitivity to calcium. Further elucidation of the mechanism can provide insights to role of gravin if any in the pathophysiology of impaired contractility.

Keywords: Cardiac muscle; Contraction; Force development; Gravin; Intracellular calcium; Trabeculae.

MeSH terms

  • A Kinase Anchor Proteins / genetics*
  • Animals
  • Biomechanical Phenomena
  • Calcium / metabolism*
  • Cell Cycle Proteins / genetics*
  • Cytosol / metabolism
  • Excitation Contraction Coupling / genetics
  • Gene Expression Regulation / genetics
  • Intracellular Space / metabolism*
  • Mechanical Phenomena*
  • Mice
  • Mutation*
  • Myocardium / cytology*
  • Myocardium / metabolism
  • Sarcoplasmic Reticulum / metabolism

Substances

  • A Kinase Anchor Proteins
  • Akap12 protein, mouse
  • Cell Cycle Proteins
  • Calcium