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上皮钠通道(ENaC)和诱导型一氧化氮合酶(iNOS)转录抑制的新机制。

New mechanisms for transcriptional repression of ENaC And iNOS.

作者信息

Kone Bruce C, Wenzhang Zhang, Zhiyuan Yu

出版信息

Trans Am Clin Climatol Assoc. 2007;118:45-56.

Abstract

Gene transcription is highly regulated to ensure that specific genes are expressed at the appropriate times, places and levels in response to various genetic and environmental stimuli. Activation of some genes occurs by relief of basal repression controls, whereas termination of active transcription can involve feedback inhibition. We describe our characterization of aldosterone-triggered de-repression of the epithelial Na(+) channel-alpha subunit (ENaCalpha) gene in renal collecting duct cells in a process that involves a novel nuclear repressor complex, consisting of a histone H3 K79 methyltransferase and the putative transcription factor AF9, that regulates targeted histone H3 K79 methylation at the ENaCalpha promoter. As an example of feedback inhibition, we describe our work characterizing how the end product, nitric oxide, feedback inhibits inducible nitric oxide synthase (iNOS) gene transcription by S-nitrosylating its transactivator poly(ADP-ribose) polymerase (PARP-1) and, thereby, decreasing its ability to act at the iNOS promoter.

摘要

基因转录受到高度调控,以确保特定基因在适当的时间、地点和水平上表达,从而响应各种遗传和环境刺激。一些基因的激活是通过解除基础抑制控制来实现的,而活跃转录的终止可能涉及反馈抑制。我们描述了我们对醛固酮触发的肾集合管细胞中上皮钠通道α亚基(ENaCalpha)基因去抑制的特征分析,这一过程涉及一种新型核阻遏复合物,该复合物由组蛋白H3 K79甲基转移酶和假定的转录因子AF9组成,它调节ENaCalpha启动子处靶向组蛋白H3 K79的甲基化。作为反馈抑制的一个例子,我们描述了我们的工作,即表征终产物一氧化氮如何通过对其反式激活因子聚(ADP - 核糖)聚合酶(PARP - 1)进行S - 亚硝基化作用,从而反馈抑制诱导型一氧化氮合酶(iNOS)基因转录,并因此降低其在iNOS启动子处发挥作用的能力。

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