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首页> 外文期刊>The Journal of biological chemistry >Differential Regulation of Gene Expression by Protein Kinase C Isozymes as Determined by Genome-wide Expression Analysis
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Differential Regulation of Gene Expression by Protein Kinase C Isozymes as Determined by Genome-wide Expression Analysis

机译:蛋白激酶C同工酶基因表达的差异调节如基因组 - 宽的表达分析

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Protein kinase C (PKC) isozymes are key signal transducers involved in normal physiology and disease and have been widely implicated in cancer progression. Despite our extensive knowledge of the signaling pathways regulated by PKC isozymes and their effectors, there is essentially no information on how individual members of the PKC family regulate gene transcription. Here, we report the first PKC isozyme-specific analysis of global gene expression by microarray using RNAi depletion of diacylglycerol/phorbol ester-regulated PKCs. A thorough analysis of this microarray data revealed unique patterns of gene expression controlled by PKCα, PKCδ, and PKC?, which are remarkably different in cells growing in serum or in response to phorbol ester stimulation. PKCδ is the most relevant isoform in controlling the induction of genes by phorbol ester stimulation, whereas PKC? predominantly regulates gene expression in serum. We also established that two PKCδ-regulated genes, FOSL1 and BCL2A1, mediate the apoptotic effect of phorbol esters or the chemotherapeutic agent etoposide in prostate cancer cells. Our studies offer a unique opportunity for establishing novel transcriptional effectors for PKC isozymes and may have significant functional and therapeutic implications.
机译:蛋白激酶C(PKC)同工酶是涉及正常生理和疾病的关键信号传感器,并且已被广泛涉及癌症进展。尽管我们对PKC同工酶和其效应器调节的信号传导途径的广泛了解,但基本上没有关于PKC家族的个体成员如何调节基因转录的信息。在这里,我们通过使用RNAI耗尽的二酰基甘油/菲尔博酯调节的PKC来报告通过微阵列的全局基因表达的第一个PKC同工酶特异性分析。对该微阵列数据的彻底分析揭示了由PKCα,PKCδ和PKC控制控制的基因表达的独特模式,这在血清中生长的细胞中或响应于Phorbol酯刺激而显着不同。 pkcδ是通过邦酯刺激控制基因诱导的同学变化,而PKC?主要调节血清中的基因表达。我们还建立了两个PKCδ调节基因,FOSL1和BCL2A1,介导菲尔伯酯或化学治疗剂在前列腺癌细胞中的凋亡作用。我们的研究提供了为PKC同工酶建立新型转录效果的独特机会,并且可能具有显着的功能和治疗意义。

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