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Elevated ATF4 Expression, in the Absence of Other Signals, Is Sufficient for Transcriptional Induction via CCAAT Enhancer-binding Protein-activating Transcription Factor Response Elements*

机译:在没有其他信号的情况下,ATF4的表达升高足以通过CCAAT增强子结合蛋白激活转录因子响应元件进行转录诱导*

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摘要

Protein limitation in vivo or amino acid deprivation of cells in culture causes a signal transduction cascade consisting of activation of the kinase GCN2 (general control nonderepressible 2), phosphorylation of eukaryotic initiation factor 2, and increased synthesis of activating transcription factor (ATF) 4 by a translational control mechanism. In a self-limiting transcriptional program, ATF4 transiently activates a wide range of downstream target genes involved in transport, cellular metabolism, and other cell functions. Simultaneous activation of other signal transduction pathways by amino acid deprivation led to the question of whether or not the increased abundance of ATF4 alone was sufficient to trigger the transcriptional control mechanisms. Using 293 cells that ectopically express ATF4 in a tetracycline-inducible manner showed that ATF4 target genes were activated in the absence of amino acid deprivation. Ectopic expression of ATF4 alone resulted in effective recruitment of the general transcription machinery, but some reduction in histone modification was observed. These data document that ATF4 alone is sufficient to trigger the amino acid-responsive transcriptional control program. However, the absolute amount of ectopic ATF4 required to achieve the same degree of transcriptional activation observed after amino acid limitation was greater, suggesting that other factors may serve to enhance ATF4 function.
机译:体内蛋白质限制或培养中细胞的氨基酸剥夺会导致信号转导级联反应,包括激酶GCN2的激活(一般控制不可抑制2),真核起始因子2的磷酸化以及激活转录因子(ATF)4的合成增加。翻译控制机制。在自限转录程序中,ATF4瞬时激活与运输,细胞代谢和其他细胞功能有关的多种下游靶基因。氨基酸剥夺同时激活其他信号转导途径引发了一个问题,即单独增加ATF4的丰度是否足以触发转录控制机制。使用以四环素可诱导的方式异位表达ATF4的293细胞显示,ATF4靶基因在不存在氨基酸剥夺的情况下被激活。仅ATF4的异位表达可有效募集通用转录机制,但观察到组蛋白修饰有所降低。这些数据证明,单独的ATF4足以触发氨基酸响应的转录控制程序。但是,在氨基酸限制后,达到相同程度的转录激活所需的异位ATF4的绝对量更大,这表明其他因素可能有助于增强ATF4的功能。

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