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October 10, 2009Cardiovascular Research86 citationsOpen Access

Ischaemic preconditioning improves proteasomal activity and increases the degradation of  PKC during reperfusion

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ECEric N. ChurchillJFJulio Cesar Batista FerreiraPBPatrı́cia C. Brum

Structured PICO

P
Population
Ex vivo rat model of myocardial infarction
I
Intervention
Ischaemic preconditioning (short bouts of ischaemia and reperfusion prior to prolonged ischaemic event)
C
Comparator
Ischaemia/reperfusion without preconditioning
O
Outcome
deltaPKC and epsilonPKC translocation/accumulation, and ATP-dependent proteasomal activitysurrogate

Ischaemic preconditioning protects against ischaemia/reperfusion injury by preserving ATP-dependent proteasomal function, which decreases pro-apoptotic deltaPKC and increases pro-survival epsilonPKC at cardiac mitochondria.

Abstract

AIMS: The response of the myocardium to an ischaemic insult is regulated by two highly homologous protein kinase C (PKC) isozymes, delta and epsilonPKC. Here, we determined the spatial and temporal relationships between these two isozymes in the context of ischaemia/reperfusion (I/R) and ischaemic preconditioning (IPC) to better understand their roles in cardioprotection. METHODS AND RESULTS: Using an ex vivo rat model of myocardial infarction, we found that short bouts of ischaemia and reperfusion prior to the prolonged ischaemic event (IPC) diminished deltaPKC translocation by 3.8-fold and increased epsilonPKC accumulation at mitochondria by 16-fold during reperfusion. In addition, total cellular levels of deltaPKC decreased by 60 +/- 2.7% in response to IPC, whereas the levels of epsilonPKC did not significantly change. Prolonged ischaemia induced a 48 +/- 11% decline in the ATP-dependent proteasomal activity and increased the accumulation of misfolded proteins during reperfusion by 192 +/- 32%; both of these events were completely prevented by IPC. Pharmacological inhibition of the proteasome or selective inhibition of epsilonPKC during IPC restored deltaPKC levels at the mitochondria while decreasing epsilonPKC levels, resulting in a loss of IPC-induced protection from I/R. Importantly, increased myocardial injury was the result, in part, of restoring a deltaPKC-mediated I/R pro-apoptotic phenotype by decreasing pro-survival signalling and increasing cytochrome c release into the cytosol. CONCLUSION: Taken together, our findings indicate that IPC prevents I/R injury at reperfusion by protecting ATP-dependent 26S proteasomal function. This decreases the accumulation of the pro-apoptotic kinase, deltaPKC, at cardiac mitochondria, resulting in the accumulation of the pro-survival kinase, epsilonPKC.

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Cite This Study

Churchill et al. (2009) studied this question.

synapsesocial.com/papers/6a81631d71edfdad573c7bdbhttps://doi.org/10.1093/cvr/cvp334
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