首页> 外文OA文献 >Deletion of the Dual Specific Phosphatase-4 (DUSP-4) Gene Reveals an Essential Non-redundant Role for MAP Kinase Phosphatase-2 (MKP-2) in Proliferation and Cell Survival*
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Deletion of the Dual Specific Phosphatase-4 (DUSP-4) Gene Reveals an Essential Non-redundant Role for MAP Kinase Phosphatase-2 (MKP-2) in Proliferation and Cell Survival*

机译:双重特异性磷酸酶4(DUSP-4)基因的删除揭示了MAP激酶磷酸酶2(MKP-2)在增殖和细胞存活中的基本非冗余作用*

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摘要

Mitogen-activated protein kinase phosphatase-2 (MKP-2) is a type 1 nuclear dual specific phosphatase (DUSP) implicated in a number of cancers. We examined the role of MKP-2 in the regulation of MAP kinase phosphorylation, cell proliferation, and survival responses in mouse embryonic fibroblasts (MEFs) derived from a novel MKP-2 (DUSP-4) deletion mouse. We show that serum and PDGF induced ERK-dependent MKP-2 expression in wild type MEFs but not in MKP-2−/− MEFs. PDGF stimulation of sustained ERK phosphorylation was enhanced in MKP-2−/− MEFs, whereas anisomycin-induced JNK was only marginally increased. However, marked effects upon cell growth parameters were observed. Cellular proliferation rates were significantly reduced in MKP-2−/− MEFs and associated with a significant increase in cell doubling time. Infection with adenoviral MKP-2 reversed the decrease in proliferation. Cell cycle analysis revealed a block in G2/M phase transition associated with cyclin B accumulation and enhanced cdc2 phosphorylation. MEFs from MKP-2−/− mice also showed enhanced apoptosis when stimulated with anisomycin correlated with increased caspase-3 cleavage and γH2AX phosphorylation. Increased apoptosis was reversed by adenoviral MKP-2 infection and correlated with selective inhibition of JNK signaling. Collectively, these data demonstrate for the first time a critical non-redundant role for MKP-2 in regulating cell cycle progression and apoptosis.
机译:丝裂原活化的蛋白激酶磷酸酶2(MKP-2)是一种1型核双特异性磷酸酶(DUSP),与多种癌症有关。我们检查了MKP-2在MAP激酶磷酸化,细胞增殖和存活应答中的作用,该小鼠衍生自新型MKP-2(DUSP-4)缺失小鼠的小鼠胚胎成纤维细胞(MEF)。我们显示血清和PDGF诱导野生型MEFs中的ERK依赖性MKP-2表达,但不在MKP-2 / MEF中。 PDGFGF对ERK持续磷酸化的刺激在MKP-2- / MEF中得到增强,而茴香霉素诱导的JNK仅略有增加。然而,观察到对细胞生长参数的显着影响。细胞增殖速率在MKP-2- / MEF中显着降低,并且与细胞倍增时间的显着增加有关。腺病毒MKP-2感染逆转了增殖减少。细胞周期分析显示,与细胞周期蛋白B积累和增强的cdc2磷酸化相关的G2 / M相变受阻。当用茴香霉素刺激与caspase-3裂解增加和γH2AX磷酸化相关时,来自MKP-2-/-小鼠的MEF也显示出增强的凋亡。腺病毒MKP-2感染可逆转凋亡增加,并与JNK信号传导的选择性抑制相关。这些数据共同证明了MKP-2在调节细胞周期进程和细胞凋亡中的关键非冗余作用。

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