Ischemic preconditioning-induced activation of ERK1/2 in the rat hippocampus

被引:40
作者
Choi, Jeong-Sun [1 ]
Kim, Ha-Young [1 ]
Cha, Jung-Ho [1 ]
Lee, Mun-Yong [1 ]
机构
[1] Catholic Univ Korea, Dept Anat, Coll Med, Seoul 137701, South Korea
关键词
ERK1/2; hippocampus; ischemic preconditioning; CA1; neurons;
D O I
10.1016/j.neulet.2006.09.053
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We investigated the activation and cellular localization of the extracellular signal-regulated kinases ERK1/2 in a rat model of ischemic tolerance induction. Adult male Sprague-Dawley rats were subjected to 3 min of sublethal ischemic preconditioning. Activation of ERK1/2 showed the characteristic time- and cell-dependent patterns. Rapid and short-lasting activation of ERK after 3 min of cerebral ischemia was noted immediately in the dentate granule cells and mossy fibers of the hippocampus, and then occurred sequentially in CA3 and CA1 neurons and dentate hilar neurons at 10 min. Phosphorylation of ERK1/2 in hippocampal neurons returned to the basal level in an ordered manner. Basal level phosphorylation was attained first, at 30 min, by the CA1 neurons, and was then observed in CA3 and granule cells by 1 h and noted in some dentate hilar neurons at 12 h. By contrast, phosphorylation of ERK1/2 in mossy fibers and the CA1 dendritic field was sustained for at least 3 d. Transient activation of ERK1/2 was induced also in astrocytes of the dentate hilar region at I d post-stimulation. These data demonstrate that the short cerebral-ischemic preconditioning induced rapid and transient activation of ERK 1/2 in tolerance-acquired CA1 neurons as well as in ischemia-resistant CA3 and dentate granule cells, and that the short preconditioning sustained activation in mossy fibers and neuropil areas, suggesting that ERK1/2 activation may be involved in the mechanism of ischemic tolerance in the rat hippocampus. (c) 2006 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:187 / 191
页数:5
相关论文
共 21 条
[1]   MEK1 protein kinase inhibition protects against damage resulting from focal cerebral ischemia [J].
Alessandrini, A ;
Namura, S ;
Moskowitz, MA ;
Bonventre, JV .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (22) :12866-12869
[2]   Upregulation of gp130 and STAT3 activation in the rat hippocampus following transient forebrain ischemia [J].
Choi, JS ;
Kim, SY ;
Cha, JH ;
Choi, YS ;
Sung, KW ;
Oh, ST ;
Kim, ON ;
Chung, JW ;
Chun, MH ;
Lee, SB ;
Lee, MY .
GLIA, 2003, 41 (03) :237-246
[3]   Requirement for nitric oxide activation of p21ras/extracellular regulated kinase in neuronal ischemic preconditioning [J].
Gonzalez-Zulueta, M ;
Feldman, AB ;
Klesse, LJ ;
Kalb, RG ;
Dillman, JF ;
Parada, LF ;
Dawson, TM ;
Dawson, VL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (01) :436-441
[4]   Extracellular signal-regulated kinase and c-Jun N-terminal protein kinase in ischemic tolerance [J].
Gu, ZL ;
Jiang, Q ;
Zhang, GY .
NEUROREPORT, 2001, 12 (16) :3487-3491
[5]   Neuroprotection by brain-derived neurotrophic factor is mediated by extracellular signal-regulated kinase and phosphatidylinositol 3-kinase [J].
Hetman, M ;
Kanning, K ;
Cavanaugh, JE ;
Xia, ZG .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (32) :22569-22580
[6]   Alteration of MAP kinase pathways after transient forebrain ischemia [J].
Hu, BR ;
Liu, CL ;
Park, DJ .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2000, 20 (07) :1089-1095
[7]   Hypoxia-induced ischemic tolerance in neonatal rat brain involves enhanced ERK1/2 signaling [J].
Jones, NM ;
Bergeron, M .
JOURNAL OF NEUROCHEMISTRY, 2004, 89 (01) :157-167
[8]   INDUCTION OF NADPH-DIAPHORASE ACTIVITY IN THE HIPPOCAMPUS IN A RAT MODEL OF CEREBRAL-ISCHEMIA AND ISCHEMIC TOLERANCE [J].
KATO, H ;
KOGURE, K ;
LIU, Y ;
ARAKI, T ;
ITOYAMA, Y .
BRAIN RESEARCH, 1994, 652 (01) :71-75
[9]   Ischemic preconditioning-induced expression of gp130 and STAT3 in astrocytes of the rat hippocampus [J].
Kim, SY ;
Park, HJ ;
Choi, JS ;
Lee, JE ;
Cha, JH ;
Choi, YS ;
Cho, KO ;
Chun, MH ;
Lee, MY .
MOLECULAR BRAIN RESEARCH, 2004, 129 (1-2) :96-103
[10]   ISCHEMIC TOLERANCE PHENOMENON FOUND IN THE BRAIN [J].
KITAGAWA, K ;
MATSUMOTO, M ;
TAGAYA, M ;
HATA, R ;
UEDA, H ;
NIINOBE, M ;
HANDA, N ;
FUKUNAGA, R ;
KIMURA, K ;
MIKOSHIBA, K ;
KAMADA, T .
BRAIN RESEARCH, 1990, 528 (01) :21-24