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June 22, 2001Circulation Research101 citationsOpen Access

Protein Kinase C ε–Src Modules Direct Signal Transduction in Nitric Oxide–Induced Cardioprotection

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TVThomas M. VondriskaJZJun ZhangCSChangxu Song

Structured PICO

Does the PKCepsilon-Src module direct signal transduction in NO-induced cardioprotection in conscious rabbits?

P
Population
Conscious rabbit model of nitric oxide (NO)-induced late preconditioning, adult cardiac cells, and in vitro models
I
Intervention
Nitric oxide (NO)-induced late preconditioning, recombinant adenoviruses encoding PKCepsilon, and PKC inhibition
C
Comparator
Control conditions (implied)
O
Outcome
Formation of PKCepsilon-Src signaling modules, Src activity, and cardioprotectionsurrogate

The study provides direct evidence that PKCepsilon-Src signaling modules play a functional role in orchestrating NO-induced cardioprotection.

Abstract

An essential role for protein kinase C epsilon (PKCepsilon) has been shown in multiple forms of cardioprotection; however, there is a distinct paucity of information concerning the signaling architecture that is responsible for the manifestation of a protective phenotype. We and others have recently shown that signal transduction may proceed via the formation of signaling complexes (Circ Res. 2001;88:59-62). In order to understand if the assembly of multiprotein complexes is the manner by which signaling is conducted in cardioprotection, we designed a series of experiments to characterize the associations of Src tyrosine kinase with PKCepsilon in a conscious rabbit model of nitric oxide (NO)-induced late preconditioning. Our data demonstrate that PKCepsilon and Src can form functional signaling modules in vitro: PKCepsilon interacts with Src; the association with PKCepsilon activates Src; and adult cardiac cells receiving recombinant adenoviruses encoding PKCepsilon exhibit increased Src activity. Furthermore, our results show that NO-induced late preconditioning involved PKCepsilon-Src module formation and enhanced the enzymatic activity of PKCepsilon-associated Src. Inhibition of PKC blocked cardioprotection, module formation, and PKCepsilon-associated Src activity, providing direct evidence for a functional role of the PKCepsilon-Src module in the orchestration of NO-induced cardioprotection in conscious rabbits.

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Cite This Study

Vondriska et al. (2001) studied this question.

synapsesocial.com/papers/6a717193c1a24a6142dbb386https://doi.org/10.1161/hh1201.092994
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