首页> 美国卫生研究院文献>Nucleic Acids Research >CHOP gene expression in response to endoplasmic-reticular stress requires NFY interaction with different domains of a conserved DNA-binding element
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CHOP gene expression in response to endoplasmic-reticular stress requires NFY interaction with different domains of a conserved DNA-binding element

机译:响应内质网应激的CHOP基因表达需要NFY与保守的DNA结合元件的不同域相互作用

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摘要

The transcription factor CHOP/GADD153 gene is induced by cellular stress and is involved in mediating apoptosis. We report the identification of a conserved region in the promoter of the CHOP gene responsible for its inducibility by endoplasmic reticulum (ER) stress. Deletion mutants of the human CHOP promoter identify a region comprising nucleotides –75 to –104 required for both constitutive and ER-stress-inducible expression. This region of the promoter, the ER-stress element (ERSE) is sufficient to confer both increased basal activity and ER-stress inducibility to an otherwise inactive heterologous promoter. The CHOP ERSE is a novel variant of the ERSE as it contains two different functional domains, and a GA- instead of GC-rich intervening sequence. The CCAAT-box domain occupied by the constitutive transcriptional activator nuclear factor Y (NFY) is required for constitutive activation whereas the variant GCACG ‘inducible’ domain uniquely mediates ER-stress inducibility. By UV-crosslinking analysis NFY makes contact not only with the constitutive activator CCAAT box but also with the inducible GCACG domain. Deletions and nucleotide substitutions in the CCAAT box as well as its replacement by an SP1 site failed to support ER inducibility. These findings support the notion that NFY is not only required for constitutive activation of CHOP gene transcription, but is also an active and essential element for the assembly of an ER-stress-inducible enhanceosome that activates CHOP gene expression in response to cellular stress.
机译:转录因子CHOP / GADD153基因受细胞应激诱导,参与介导细胞凋亡。我们报告了CHOP基因启动子中的保守区域的鉴定,该区域负责通过内质网(ER)胁迫诱导其诱导。人类CHOP启动子的缺失突变体鉴定出一个区域,该区域包含组成型和ER应激诱导表达所需的核苷酸–75至–104。启动子的这一区域,即ER应激元件(ERSE)足以赋予基础活性和增强的ER应激诱导能力,否则它们会失去活性。 CHOP ERSE是ERSE的新型变体,因为它包含两个不同的功能域,以及一个富含GA而不是富含GC的插入序列。组成型激活需要组成型转录激活子核因子Y(NFY)占据的CCAAT-box结构域,而变体GCACG的“可诱导”结构域则独特地介导了ER应激的诱导性。通过UV交联分析,NFY不仅与组成型激活剂CCAAT框接触,而且与可诱导的GCACG域接触。 CCAAT框中的删除和核苷酸取代以及被SP1位点取代不能支持ER诱导。这些发现支持了这样的观点,即NFY不仅是CHOP基因转录的组成性激活所必需的,而且是组装ER应激诱导型增强体以响应细胞应激而激活CHOP基因表达的活性和必要元素。

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