Overexpression of Myosin Phosphatase Reduces Ca2+ Sensitivity of Contraction and Impairs Cardiac Function

    • Mizutani Hideo
    • Department of Cardiology and Nephrology, Mie University Graduate School of Medicine
    • Okamoto Ryuji
    • Department of Cardiology and Nephrology, Mie University Graduate School of Medicine
    • Moriki Nobuyuki
    • Department of Cardiology and Nephrology, Mie University Graduate School of Medicine
    • Konishi Katsuhisa
    • Department of Cardiology and Nephrology, Mie University Graduate School of Medicine

    • Taniguchi Masaya
    • Department of Cardiology and Nephrology, Mie University Graduate School of Medicine
    • Fujita Satoshi
    • Department of Cardiology and Nephrology, Mie University Graduate School of Medicine
    • Dohi Kaoru
    • Department of Cardiology and Nephrology, Mie University Graduate School of Medicine
    • Onishi Katsuya
    • Department of Cardiology and Nephrology, Mie University Graduate School of Medicine

    • Suzuki Noboru
    • Functional Genomics Institutes, Life Science Research Center, Mie University
    • Satoh Shinji
    • Department of Cardiology, National Hospital Organization Kyushu Medical Center
    • Makino Naoki
    • Division of Molecular and Clinical Gerontology, Medical Institute of Bioregulation, Kyushu university
    • Itoh Takeo
    • Department of Cellular and Molecular Pharmacology, Graduate School of Medical Sciences, Nagoya City University

    • Ito Masaaki
    • Department of Cardiology and Nephrology, Mie University Graduate School of Medicine

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Background: Phosphorylation of the regulatory light chain of myosin (MLC) has roles in cardiac function. In vitro, myosin phosphatase target subunit 2 (MYPT2) is a strongly suspected regulatory subunit of cardiac myosin phosphatase (MP), but there is no in-vivo evidence regarding the functions of MYPT2 in the heart. Methods and Results: Transgenic mice (Tg) overexpressing MYPT2 were generated using the α-MHC promoter. Tg hearts showed an increased expression of MYPT2 and concomitant increase of the endogenous catalytic subunit of type 1 phosphatase (PP1cδ), resulting in an increase of the MP holoenzyme. The level of phosphorylation of ventricular MLC was reduced. The pCa-tension relationship, using β-escin permeabilized fibers, revealed decreased Ca2+ sensitization of contraction in the Tg heart. LV enlargement with associated impairment of function was observed in the Tg heart and ultrastructural examination showed cardiomyocyte degeneration. Conclusions: Overexpression of MYPT2 and the increase in PP1cδ resulted in an increase of the MP holoenzyme and a decrease in the level of MLC phosphorylation. The latter induced Ca2+ desensitization of contraction and decreased LV contractility, resulting in LV enlargement. Thus, MYPT2 is truly the regulatory subunit of cardiac MP in-vivo and plays a significant role in modulating cardiac function. (Circ J 2010; 74: 120 - 128)

収録刊行物

Circulation Journal  

Circulation Journal 74(1), 120-128, 2010 

社団法人 日本循環器学会