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首页> 外文期刊>Molecular and Cellular Biology >Stress-induced binding of the transcriptional factor CHOP to a novel DNA control element.
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Stress-induced binding of the transcriptional factor CHOP to a novel DNA control element.

机译:应激诱导转录因子CHOP与新型DNA控制元件的结合。

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摘要

CHOP (GADD153) is a mammalian nuclear protein that dimerizes with members of the C/EBP family of transcriptional factors. Absent under normal conditions, CHOP is induced by the stress encountered during nutrient deprivation, the acute-phase response, and treatment of cells with certain toxins. The basic region of CHOP deviates considerably in sequence from that of other C/EBP proteins, and CHOP-C/EBP heterodimers are incapable of binding to a common class of C/EBP sites. With respect to such sites, CHOP serves as an inhibitor of the activity of C/EBP proteins. However, recent studies indicate that certain functions of CHOP, such as the induction of growth arrest by overexpression of the wild-type protein and oncogenic transformation by the TLS-CHOP fusion protein, require an intact basic region, suggesting that DNA binding by CHOP may be implicated in these activities. In this study an in vitro PCR-based selection assay was used to identify sequences bound by CHOP-C/EBP dimers. These sequences were found to contain a unique core element PuPuPuTGCAAT(A/C)CCC. Competition in DNA-binding assays, DNase 1 footprint analysis, and methylation interference demonstrate that the binding is sequence specific. Deletions in the basic region of CHOP lead to a loss of DNA binding, suggesting that CHOP participates in this process. Stress induction in NIH 3T3 cells leads to the appearance of CHOP-containing DNA-binding activity. CHOP is found to contain a transcriptional activation domain which is inducible by cellular stress, lending further support to the notion that the protein can function as a positively acting transcription factor. We conclude that CHOP may serve a dual role both as an inhibitor of the ability of C/EBP proteins to activate some target genes and as a direct activator of others.
机译:CHOP(GADD153)是一种哺乳动物核蛋白,与C / EBP转录因子家族的成员二聚。在正常条件下不存在CHOP,其原因是营养缺乏,急性期反应以及某些毒素对细胞的处理过程中所遇到的压力。 CHOP的基本区域在序列上与其他C / EBP蛋白的序列有很大不同,并且CHOP-C / EBP异二聚体不能与常见的C / EBP位点结合。关于这些位点,CHOP充当C / EBP蛋白活性的抑制剂。但是,最近的研究表明,CHOP的某些功能(例如通过野生型蛋白的过表达诱导生长停滞和TLS-CHOP融合蛋白的致癌转化)需要一个完整的基本区域,这表明CHOP的DNA结合可能与这些活动有关。在这项研究中,基于体外PCR的选择测定用于鉴定CHOP-C / EBP二聚体结合的序列。发现这些序列包含独特的核心元件PuPuPuTGCAAT(A / C)CCC。 DNA结合测定,DNase 1足迹分析和甲基化干扰的竞争证明了结合是序列特异性的。在CHOP的基本区域中的缺失导致DNA结合的丧失,这表明CHOP参与了该过程。 NIH 3T3细胞中的压力诱导导致出现含有CHOP的DNA结合活性。发现CHOP包含可被细胞应激诱导的转录激活结构域,这进一步支持了蛋白质可以充当正性转录因子的观点。我们得出的结论是,CHOP既可以充当C / EBP蛋白激活某些目标基因的能力的抑制剂,又可以充当其他目标蛋白的直接激活剂。

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