Isoproterenol Activates Extracellular Signal–Regulated Protein Kinases in Cardiomyocytes Through Calcineurin

Author:

Zou Yunzeng1,Yao Atsushi1,Zhu Weidong1,Kudoh Sumiyo1,Hiroi Yukio1,Shimoyama Masaki1,Uozumi Hiroki1,Kohmoto Osami1,Takahashi Toshiyuki1,Shibasaki Futoshi1,Nagai Ryozo1,Yazaki Yoshio1,Komuro Issei1

Affiliation:

1. From the Department of Cardiovascular Science and Medicine, Chiba University Graduate School of Medicine, Chiba (Y.Z., I.K.); Department of Cardiovascular Medicine, University of Tokyo Graduate School of Medicine, Tokyo (A.Y., W.Z., S.K., Y.H., M.S., H.U., T.T., R.N., Y.Y.); Department of Medicine II, Saitama Medical School, Saitama (O.K.); and Tokyo Metropolitan Institute of Medical Science, Tokyo (F.S.), Japan.

Abstract

Background —Extracellular signal–regulated kinases (ERKs) and calcineurin have been reported to play important roles in the development of cardiac hypertrophy. We examined here the relation between calcineurin and ERKs in cardiomyocytes. Methods and Results —Isoproterenol activated ERKs in cultured cardiomyocytes of neonatal rats, and the activation was abolished by chelation of extracellular Ca 2+ with EGTA, blockade of L-type Ca 2+ channels with nifedipine, or depletion of intracellular Ca 2+ stores with thapsigargin. Isoproterenol-induced activation of ERKs was also significantly suppressed by calcineurin inhibitors in cultured cardiomyocytes as well as in the hearts of mice. Isoproterenol failed to activate ERKs in either the cultured cardiomyocytes or the hearts of mice that overexpress the dominant negative mutant of calcineurin. Isoproterenol elevated intracellular Ca 2+ levels at both systolic and diastolic phases and dose-dependently activated calcineurin. Inhibition of calcineurin also attenuated isoproterenol-stimulated phosphorylation of Src, Shc, and Raf-1 kinase. The immunocytochemistry revealed that calcineurin was localized in the Z band, and isoproterenol induced translocation of calcineurin and ERKs into the nucleus. Conclusions —Calcineurin, which is activated by marked elevation of intracellular Ca 2+ levels by the Ca 2+ -induced Ca 2+ release mechanism, regulates isoproterenol-induced activation of ERKs in cardiomyocytes.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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