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非洲爪蟾糖皮质激素受体辅助因子的DNA结合位点分析。体外结合特异性及类固醇诱导的纤维蛋白原基因转录扩增的关键核苷酸。

Analysis of the DNA-binding site for Xenopus glucocorticoid receptor accessory factor. Critical nucleotides for binding specificity in vitro and for amplification of steroid-induced fibrinogen gene transcription.

作者信息

Li M, Ye X, Woodward R N, Zhu C, Nichols L A, Holland L J

机构信息

Department of Physiology, University of Missouri School of Medicine, Columbia, Missouri 65212, USA.

出版信息

J Biol Chem. 1998 Apr 17;273(16):9790-6. doi: 10.1074/jbc.273.16.9790.

DOI:10.1074/jbc.273.16.9790
PMID:9545317
Abstract

In addition to the glucocorticoid receptor, DNA-binding proteins called accessory factors play a role in hormone activation of many glucocorticoid-responsive genes. Hormonal regulation of the gamma-fibrinogen subunit gene from the frog Xenopus laevis requires a novel DNA sequence that binds a liver nuclear protein called Xenopus glucocorticoid receptor accessory factor (XGRAF). Here we demonstrate that the recognition site for XGRAF encompasses GAGTTAA at positions -175 to -169 relative to the start site of transcription. This sequence is not closely related to the binding sites for known transcription factors. The two guanosines make close contact with XGRAF, as shown by the methylation interference assay. Single-point mutagenesis of every nucleotide in the 9-base pair region from positions -177 to -169 showed an excellent correlation between ability to bind XGRAF in vitro and ability to amplify hormone-induced transcription from DNA transfected into Xenopus primary hepatocytes. Conversely, XGRAF had little or no effect on basal transcription of the gamma-fibrinogen gene. Maximal hormonal induction also requires three half-glucocorticoid response elements (half-GREs) homologous to the downstream half of the consensus GRE. Interestingly, the XGRAF-binding site is immediately adjacent to the most important half-GRE. This close proximity suggests a new mechanism for activation of a gene lacking a conventional full GRE.

摘要

除糖皮质激素受体外,一类称为辅助因子的DNA结合蛋白在许多糖皮质激素反应性基因的激素激活过程中发挥作用。来自非洲爪蟾(Xenopus laevis)的γ-纤维蛋白原亚基基因的激素调节需要一种新的DNA序列,该序列可结合一种称为爪蟾糖皮质激素受体辅助因子(XGRAF)的肝核蛋白。在此,我们证明XGRAF的识别位点在相对于转录起始位点的-175至-169位包含GAGTTAA。该序列与已知转录因子的结合位点没有密切关系。如甲基化干扰试验所示,两个鸟苷与XGRAF紧密接触。对从-177至-169位的9个碱基对区域中的每个核苷酸进行单点诱变,结果显示体外结合XGRAF的能力与从转染到非洲爪蟾原代肝细胞的DNA中扩增激素诱导转录的能力之间具有极好的相关性。相反,XGRAF对γ-纤维蛋白原基因的基础转录几乎没有影响。最大激素诱导还需要三个与共有糖皮质激素反应元件(GRE)下游半段同源的半糖皮质激素反应元件(half-GREs)。有趣的是,XGRAF结合位点紧邻最重要的half-GRE。这种紧密相邻提示了一种激活缺乏常规完整GRE的基因的新机制。

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Analysis of the DNA-binding site for Xenopus glucocorticoid receptor accessory factor. Critical nucleotides for binding specificity in vitro and for amplification of steroid-induced fibrinogen gene transcription.非洲爪蟾糖皮质激素受体辅助因子的DNA结合位点分析。体外结合特异性及类固醇诱导的纤维蛋白原基因转录扩增的关键核苷酸。
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引用本文的文献

1
Flanking sequence composition differentially affects the binding and functional characteristics of glucocorticoid receptor homo- and heterodimers.侧翼序列组成差异地影响糖皮质激素受体同二聚体和异二聚体的结合及功能特性。
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