A1-purinergic receptor stimulation with CPA decreased unloaded shortening velocity in rat cardiac myocytes independently of beta-adrenergically mediated phosphorylation of TnI and C-protein.
Does A1-purinergic receptor stimulation alter shortening velocity and Ca2+ sensitivity in rat cardiac myocytes regardless of beta-adrenergic stimulation?
A1-purinergic receptor stimulation slows shortening velocity in rat cardiac myocytes via a mechanism independent of beta-adrenergic phosphorylation of myofilament proteins.
Single ventricular myocytes were enzymatically isolated, incubated with the A1-purinergic and beta-adrenergic receptor-specific agonists N6-cyclopentyladenosine (CPA) and isoprenaline (Iso), and then rapidly skinned. Ca2+ sensitivity of isometric tension and unloaded shortening velocity (Vo) were measured, and protein kinase A (PKA)-specific phosphorylations of troponin I (TnI) and C-protein were assessed by back-phosphorylation of cell suspensions with gamma-32P-ATP. 2. Isoprenaline treatment decreased the Ca2+ sensitivity of isometric tension relative to propranolol-treated controls, as did simultaneous stimulation with Iso and CPA (Iso + CPA). CPA alone had no effect on Ca2+ sensitivity. Vo was greater in Iso-treated cells than in paired controls, while Vo was significantly less than control in both Iso + CPA-treated and CPA-treated cells. 3. Phosphorylation of TnI and C-protein was increased by Iso treatment and also when Iso and CPA were simultaneously applied. CPA alone caused a significant decrease in the phosphorylation state of these two proteins. 4. From these results we conclude that A1-purinergic receptor stimulation does not inhibit beta-adrenergic receptor-mediated phosphorylation of myofilament proteins, nor does it alter the Ca2+ sensitivity of isometric tension at the level of the myofilaments. However, A1-receptor stimulation does decrease Vo at the level of the myofilaments by a mechanism that is independent of beta-adrenergically mediated phosphorylation of TnI and C-protein.
Strang et al. (Tue,) conducted a other in None (Rat cardiac myocytes). N6-cyclopentyladenosine (CPA) and isoprenaline (Iso) vs. Propranolol-treated controls was evaluated on Ca2+ sensitivity of isometric tension and unloaded shortening velocity (Vo). A1-purinergic receptor stimulation with CPA decreased unloaded shortening velocity in rat cardiac myocytes independently of beta-adrenergically mediated phosphorylation of TnI and C-protein.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: