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Hepatitis C virus core protein-induced loss of LZIP function correlates with cellular transformation.丙型肝炎病毒核心蛋白诱导的LZIP功能丧失与细胞转化相关。
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Potential role for luman, the cellular homologue of herpes simplex virus VP16 (alpha gene trans-inducing factor), in herpesvirus latency.单纯疱疹病毒VP16(α基因反式诱导因子)的细胞同源物鲁曼(Luman)在疱疹病毒潜伏中的潜在作用。
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Mammalian transcription factor ATF6 is synthesized as a transmembrane protein and activated by proteolysis in response to endoplasmic reticulum stress.哺乳动物转录因子ATF6最初作为跨膜蛋白合成,并在内质网应激反应中通过蛋白水解作用被激活。
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CREB-H:一种新型的哺乳动物转录因子,属于CREB/ATF家族,通过盒B元件发挥作用,具有肝脏特异性表达。

CREB-H: a novel mammalian transcription factor belonging to the CREB/ATF family and functioning via the box-B element with a liver-specific expression.

作者信息

Omori Y, Imai J, Watanabe M, Komatsu T, Suzuki Y, Kataoka K, Watanabe S, Tanigami A, Sugano S

机构信息

Otsuka GEN Research Institute, Otsuka Pharmaceutical Co. Ltd, 463-10 Kagasuno, Kawauchi-cho, Tokushima 771-0192, Japan.

出版信息

Nucleic Acids Res. 2001 May 15;29(10):2154-62. doi: 10.1093/nar/29.10.2154.

DOI:10.1093/nar/29.10.2154
PMID:11353085
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC55463/
Abstract

The expression of liver-specific genes is regulated by unequivocally allocated transcription factors via proper responsible elements within their promoters. We identified a novel transcription factor, CREB-H, and found that its expression was restricted in the liver among 16 human tissues tested. A region of CREB-H exhibited significant homology to the basic leucine zipper (b-Zip) domain of members of the CREB/ATF family: mammalian LZIP and Drosophila BBF-2 that binds to box-B, a Drosophila enhancer modulating the fat-body-specific gene expression. CREB-H contained a hydrophobic region representing a putative transmembrane domain, like LZIP. Constructing a variety of CREB-H fusion proteins with the GAL4 DNA-binding domain disclosed that CREB-H functioned as a transcriptional activator and its N-terminal 149 amino acids accounted for the activation ability. Gel mobility sift assays revealed that CREB-H did not bind to the C/EBP, AP-1 and NF-kappaB elements but specifically bound to CRE and the box-B element. Luciferase reporter assays demonstrated that like BBF-2, CREB-H activated transcription via the box-B element and that a deletion of the putative transmembrane domain increased the activation of reporter expression significantly. Furthermore, a fusion protein of GFP and full-length CREB-H was localized in reticular structures surrounding the nucleus, whereas a fusion protein of GFP and a deletion mutant lacking the putative transmembrane domain was mainly in the nucleus. These findings suggest that CREB-H plays an important role in transcriptional regulation of genes specifically expressed in the liver, and that the putative transmembrane domain may be associated with modulation of its function as the transcriptional activator.

摘要

肝脏特异性基因的表达是由明确分配的转录因子通过其启动子内适当的响应元件来调控的。我们鉴定出一种新型转录因子CREB-H,并发现其表达在所检测的16种人体组织中仅限于肝脏。CREB-H的一个区域与CREB/ATF家族成员的碱性亮氨酸拉链(b-Zip)结构域表现出显著同源性:哺乳动物的LZIP和果蝇的BBF-2,后者可与box-B结合,box-B是一种调节果蝇脂肪体特异性基因表达的增强子。与LZIP一样,CREB-H含有一个代表假定跨膜结构域的疏水区域。构建各种带有GAL4 DNA结合结构域的CREB-H融合蛋白表明,CREB-H作为转录激活因子发挥作用,其N端的149个氨基酸负责激活能力。凝胶迁移率筛选试验表明,CREB-H不与C/EBP、AP-1和NF-κB元件结合,但能特异性结合CRE和box-B元件。荧光素酶报告基因试验表明,与BBF-2一样,CREB-H通过box-B元件激活转录,并且假定跨膜结构域的缺失显著增加了报告基因表达的激活。此外,GFP与全长CREB-H的融合蛋白定位于细胞核周围的网状结构中,而GFP与缺乏假定跨膜结构域的缺失突变体的融合蛋白主要位于细胞核中。这些发现表明,CREB-H在肝脏特异性表达基因的转录调控中起重要作用,并且假定的跨膜结构域可能与其作为转录激活因子的功能调节有关。