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非洲爪蟾糖皮质激素受体辅助因子的结合位点和单个相邻的半糖皮质激素反应元件形成一个独立的糖皮质激素反应单元。

The binding site for Xenopus glucocorticoid receptor accessory factor and a single adjacent half-GRE form an independent glucocorticoid response unit.

作者信息

Morin B, Zhu C, Woodcock G R, Li M, Woodward R N, Nichols L A, Holland L J

机构信息

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

出版信息

Biochemistry. 2000 Oct 10;39(40):12234-42. doi: 10.1021/bi000981s.

Abstract

In Xenopus laevis, transcription of the gamma-fibrinogen subunit gene is activated by glucocorticoids. Hormone induction is regulated by three glucocorticoid response element (GRE) half-sites and an additional DNA sequence which binds a novel hepatocyte nuclear protein, Xenopus glucocorticoid receptor accessory factor (XGRAF). The XGRAF binding site (GAGTTAA) is located directly upstream of the most distal half-GRE. The proximity of the binding sites for XGRAF and the glucocorticoid receptor (GR) led to the hypothesis that these two sites form a glucocorticoid response unit (GRU). By transfecting DNA into primary hepatocytes, we showed that this GRU confers hormone responsiveness in the absence of other half-GREs. The XGRAF binding site enhances function of the half-GRE without itself responding to glucocorticoids. The GRU retains efficacy in other locations relative to the gamma-fibrinogen gene promoter, further increases transcription when present in multiple copies, and activates a heterologous promoter. Despite the contiguity of the XGRAF binding site and half-GRE, the two sites can be occupied simultaneously in vitro. The binding characteristics correlate with function since mutations that disrupt concurrent XGRAF and GR binding also impair transcription. This novel GRU represents a new regulatory mechanism that may be applicable to other glucocorticoid responsive genes that lack a full GRE.

摘要

在非洲爪蟾中,γ-纤维蛋白原亚基基因的转录由糖皮质激素激活。激素诱导由三个糖皮质激素反应元件(GRE)半位点和一个额外的DNA序列调控,该序列结合一种新的肝细胞核蛋白,即非洲爪蟾糖皮质激素受体辅助因子(XGRAF)。XGRAF结合位点(GAGTTAA)位于最远端半GRE的直接上游。XGRAF和糖皮质激素受体(GR)结合位点的接近性导致了这样一种假设,即这两个位点形成一个糖皮质激素反应单元(GRU)。通过将DNA转染到原代肝细胞中,我们表明这个GRU在没有其他半GRE的情况下赋予激素反应性。XGRAF结合位点增强了半GRE的功能,但其本身对糖皮质激素无反应。GRU相对于γ-纤维蛋白原基因启动子在其他位置仍保持效力,当以多个拷贝存在时进一步增加转录,并激活一个异源启动子。尽管XGRAF结合位点和半GRE相邻,但这两个位点在体外可同时被占据。结合特性与功能相关,因为破坏XGRAF和GR同时结合的突变也会损害转录。这种新的GRU代表了一种新的调控机制,可能适用于其他缺乏完整GRE的糖皮质激素反应基因。

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