Regulation of calcium channels in smooth muscle: New insights into the role of myosin light chain kinase

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Abstract

Smooth muscle myosin light chain kinase (MLCK) plays a crucial role in artery contraction, which regulates blood pressure and blood flow distribution. In addition to this role, MLCK contributes to Ca2+ flux regulation in vascular smooth muscle (VSM) and in non-muscle cells, where cytoskeleton has been suggested to help Ca2+ channels trafficking. This conclusion is based on the use of pharmacological inhibitors of MLCK and molecular and cellular techniques developed to down-regulate the enzyme. Dissimilarities have been observed between cells and whole tissues, as well as between large conductance and small resistance arteries. A differential expression in MLCK and ion channels (either voltage-dependent Ca2+ channels or non-selective cationic channels) could account for these observations, and is in line with the functional properties of the arteries. A potential involvement of MLCK in the pathways modulating Ca2+ entry in VSM is described in the present review.

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Martinsen, A., Dessy, C., & Morel, N. (2014, September 1). Regulation of calcium channels in smooth muscle: New insights into the role of myosin light chain kinase. Channels. Landes Bioscience. https://doi.org/10.4161/19336950.2014.950537

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