Contribution of macrophage migration inhibitory factor to extracellular signal-regulated kinase activation by oxidative stress in cardiomyocytes

被引:36
作者
Fukuzawa, J
Nishihira, J
Hasebe, N
Haneda, T
Osaki, J
Saito, T
Nomura, T
Fujino, T
Wakamiya, N
Kikuchi, K
机构
[1] Asahikawa Med Coll, Dept Med 1, Asahikawa, Hokkaido 0788510, Japan
[2] Asahikawa Med Coll, Dept Pharmacol, Asahikawa, Hokkaido 0788510, Japan
[3] Asahikawa Med Coll, Dept Microbiol, Asahikawa, Hokkaido 0788510, Japan
[4] Hokkaido Univ, Sch Med, Cent Res Inst, Kita Ku, Sapporo, Hokkaido 0608638, Japan
[5] Nemuro Municipal Hosp, Nemuro 0878686, Japan
关键词
D O I
10.1074/jbc.M112054200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In response to oxidative stress, the pathogenesis of a number of cardiovascular events and several genes are stimulated by extracellular signal-regulated kinases (ERK1/2). Biphasic (early, 10 min; and delayed, 120 min) ERK1/2 activation by H2O2, a reactive oxygen species, was observed in cultured neonatal rat cardiomyocytes. We investigated the hypothesis that the delayed activation of ERK1/2 depends on a factor secreted by oxidative stress (FSO). The delayed activation was inhibited by calphostin C, a protein kinase C inhibitor. Conditioned medium (CM) obtained from cells stimulated with H2O2 induced rapid and monophasic ERK1/2 activation which was not inhibited by calphostin C. In contrast: calphostin C-pretreated CM did not activate ERK1/2. Macrophage migration inhibitory factor (MIF) was one of the candidate FSOs activating ERK1/2. The existence of MIF in CM, the recombinant MIF-stimulated ERK1/2 rapid activation, and anti-MIF neutralizing antibody-induced inhibition of the delayed activation implied that MIF could be the FSO. Pretreatment of cardiomyocytes with a mitogen-activated protein kinase/ERK kinase (MEK) inhibitor did not suppress the MIF secretion, although it prevented the ERK1/2 activation by H2O2. These results indicate that MIF is secreted from cardiomyocytes as a result of oxidative stress and activates ERK1/2 through a MEK1/2-dependent mechanism, although the secretion is not regulated by ERK1/2 but by protein kinase C.
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页码:24889 / 24895
页数:7
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