Cardioprotection Through a PKC-dependent Decrease in Myofilament ATPase
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Physiology
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Activation of myocardial kappa-opioid receptor-protein kinase C (PKC) pathways may improve postischemic contractile function through a myofilament reduction in ATP utilization. To test this, we first examined the effects of PKC inhibitors on kappa-opioid receptor-dependent cardioprotection. The kappa-opioid receptor agonist U50,488H (U50) increased postischemic left ventricular developed pressure and reduced postischemic end-diastolic pressure compared with controls. PKC inhibitors abolished the cardioprotective effects of U50. To determine whether kappa-opioid-PKC-dependent decreases in Ca2+-dependent actomyosin Mg2+-ATPase could account for cardioprotection, we subjected hearts to three separate actomyosin ATPase-lowering protocols. We observed that moderate decreases in myofibrillar ATPase were equally cardioprotective as kappa-opioid receptor stimulation. Immunoblot analysis and confocal microscopy revealed a kappa-opioid-induced increase in myofilament-associated PKC-epsilon, and myofibrillar Ca2+-independent PKC activity was increased after kappa-opioid stimulation. This PKC-myofilament association led to an increase in troponin I and C-protein phosphorylation. Thus we propose PKC-epsilon activation and translocation to the myofilaments causes a decrease in actomyosin ATPase, which contributes to the kappa-opioid receptor-dependent cardioprotective mechanism.
Gresham K, Mamidi R, Li J, Kwak H, Stelzer J J Appl Physiol (1985). 2016; 122(3):520-530.
PMID: 27909224 PMC: 5401951. DOI: 10.1152/japplphysiol.00306.2016.
Scruggs S, Wang D, Ping P Gene. 2016; 590(1):90-6.
PMID: 27312950 PMC: 5366072. DOI: 10.1016/j.gene.2016.06.016.
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Alhamdi Y, Neill D, Abrams S, Malak H, Yahya R, Barrett-Jolley R PLoS Pathog. 2015; 11(5):e1004836.
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Simon J, Chowdhury S, Warren C, Sadayappan S, Wieczorek D, Solaro R Basic Res Cardiol. 2014; 109(6):445.
PMID: 25280528 PMC: 4440670. DOI: 10.1007/s00395-014-0445-6.
Manning J, Perkins S, Sinclair E, Gao X, Zhang Y, Newman G Am J Physiol Heart Circ Physiol. 2013; 304(10):H1382-96.
PMID: 23479264 PMC: 3652066. DOI: 10.1152/ajpheart.00613.2012.