IMR Press / FBS / Volume 4 / Issue 2 / DOI: 10.2741/s283

Frontiers in Bioscience-Scholar (FBS) is published by IMR Press from Volume 13 Issue 1 (2021). Previous articles were published by another publisher on a subscription basis, and they are hosted by IMR Press on imrpress.com as a courtesy and upon agreement with Frontiers in Bioscience.

Review

Regulation of cardiac excitability by protein kinase C isozymes

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1 Stanford University, School of Medicine, Stanford CA
2 School of Physical Education and Sport, University of Sao Paulo, SP, Brazil
3 VA New York Harbor Healthcare System, State University of New York Downstate Medical Center and New York University School of Medicine, NY, NY

*Author to whom correspondence should be addressed.

 

Front. Biosci. (Schol Ed) 2012, 4(2), 532–546; https://doi.org/10.2741/s283
Published: 1 January 2012
Abstract

Cardiac excitability and electrical activity are determined by the sum of individual ion channels, gap junctions and exchanger activities. Electrophysiological remodeling during heart disease involves changes in membrane properties of cardiomyocytes and is related to higher prevalence of arrhythmia-associated morbidity and mortality. Pharmacological and genetic manipulation of cardiac cells as well as animal models of cardiovascular diseases are used to identity changes in electrophysiological properties and the molecular mechanisms associated with the disease. Protein kinase C (PKC) and several other kinases play a pivotal role in cardiac electrophysiological remodeling. Therefore, identifying specific therapies that regulate these kinases is the main focus of current research. PKC, a family of serine/threonine kinases, has been implicated as potential signaling nodes associated with biochemical and biophysical stress in cardiovascular diseases. In this review, we describe the role of PKC isozymes that are involved in cardiac excitability and discuss both genetic and pharmacological tools that were used, their attributes and limitations. Selective and effective pharmacological interventions to normalize cardiac electrical activities and correct cardiac arrhythmias will be of great clinical benefit.

Keywords
Protein Kinase C
Ion Channels
ExcitationCoupling
Arrhythmia
Review
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