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心肌细胞中丝裂原活化蛋白激酶激活的蛋白激酶2的高表达与激活

High expression and activation of MAP kinase-activated protein kinase 2 in cardiac muscle cells.

作者信息

Zu Y L, Ai Y, Gilchrist A, Maulik N, Watras J, Sha'afi R I, Das D K, Huang C K

机构信息

Department of Physiology, University of Connecticut Health Center, Farmington, CT 06030-3505, USA.

出版信息

J Mol Cell Cardiol. 1997 Aug;29(8):2159-68. doi: 10.1006/jmcc.1997.0449.

Abstract

Recently, three mammalian mitogen-activated protein (MAP) kinases, ERK, SAPK/JNK, and p38/HOG-1 have been identified, each with apparently unique signal transduction pathways. The p38 MAP kinase mediates an intracellular stress-activated signaling pathway by regulating down-stream molecules, such as MAP kinase-activated protein (MAPKAP) kinase 2. To study the tissue specificity of MAPKAP kinase 2, mRNA blots containing multiple human tissues were hybridized with a specific oligonucleotide probe corresponding to human MAPKAP kinase 2. The Northern blot analysis revealed that two mRNA species of MAPKAP kinase 2, with sizes of 4.8 and 3.3 kb, were expressed in high levels in both human heart and skeletal muscle tissues. To better understand how MAPKAP kinase 2 is regulated in myocardium, cultured rat cardiac myoblast (H9c2) cells were stimulated with heat shock, H2O2-induced oxidative stress, or phorbol ester (PMA). Enzymatic activity of cellular MAPKAP kinase 2 in the cell lysates was evaluated using an in vitro kinase assay. Exposure of H9c2 cells to heat shock or oxidative stress induced a transient increase of cellular MAPKAP kinase 2 activity, which reached its peak level within 5 min. In contrast, stimulation of H9c2 cells with PMA, a potential myocardial hypertrophic factor, induced a sustained increase of cellular MAPKAP kinase 2 activity that was detectable for over 1 h. In addition, in vitro protein phosphorylation analysis with recombinant MAPKAP kinase 2 showed that small heat shock protein (hsp25) served as a major substrate molecule for the kinase in H9c2 cells and the protein phosphorylation of cellular hsp25 was stimulated by H2O2-induced oxidative stress or PMA treatment in intact H9c2 cells. Moreover, exposure of H9c2 cells to H2O2-induced oxidative stress or PMA rapidly activated cellular p38 MAP kinase as detected by the induced protein phosphorylation of the kinase. Taken together, these results strongly suggest that MAPKAP kinase 2 may be involved in stress-activated signal transduction in myocardium.

摘要

最近,已鉴定出三种哺乳动物的丝裂原活化蛋白(MAP)激酶,即细胞外信号调节激酶(ERK)、应激激活蛋白激酶/应激活化蛋白激酶(SAPK/JNK)和p38/HOG-1,每种激酶都有明显独特的信号转导途径。p38 MAP激酶通过调节下游分子,如MAP激酶激活蛋白(MAPKAP)激酶2,介导细胞内应激激活的信号通路。为了研究MAPKAP激酶2的组织特异性,将含有多种人类组织的mRNA印迹与对应于人类MAPKAP激酶2的特异性寡核苷酸探针杂交。Northern印迹分析显示,MAPKAP激酶2的两种mRNA种类,大小分别为4.8和3.3 kb,在人类心脏和骨骼肌组织中均高水平表达。为了更好地了解MAPKAP激酶2在心肌中的调节方式,用热休克、H2O2诱导的氧化应激或佛波酯(PMA)刺激培养的大鼠心肌成肌细胞(H9c2)。使用体外激酶测定法评估细胞裂解物中细胞MAPKAP激酶2的酶活性。将H9c2细胞暴露于热休克或氧化应激会诱导细胞MAPKAP激酶2活性短暂增加,在5分钟内达到峰值水平。相反,用潜在的心肌肥厚因子PMA刺激H9c2细胞会诱导细胞MAPKAP激酶2活性持续增加,可持续检测超过1小时。此外,用重组MAPKAP激酶2进行的体外蛋白质磷酸化分析表明,小分子热休克蛋白(hsp25)是H9c2细胞中该激酶的主要底物分子,完整H9c2细胞中细胞hsp25的蛋白质磷酸化受到H2O2诱导的氧化应激或PMA处理的刺激。此外,如通过该激酶诱导的蛋白质磷酸化所检测到的,将H9c2细胞暴露于H2O2诱导的氧化应激或PMA会迅速激活细胞p38 MAP激酶。综上所述,这些结果强烈表明MAPKAP激酶2可能参与心肌中的应激激活信号转导。

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