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人类基因组中糖皮质激素受体结合位点的鉴定与表征

Identification and characterization of glucocorticoid receptor-binding sites in the human genome.

作者信息

Taniguchi-Yanai Keiko, Koike Yoshiko, Hasegawa Takashi, Furuta Yuichi, Serizawa Masakuni, Ohshima Noriko, Kato Norihiro, Yanai Kazuyuki

机构信息

Department of Gene Diagnostics and Therapeutics, Research Institute, International Medical Center of Japan, Shinjuku, Tokyo, Japan.

出版信息

J Recept Signal Transduct Res. 2010 Apr;30(2):88-105. doi: 10.3109/10799891003614816.

Abstract

Glucocorticoids regulate gene expression via binding of the ligand-activated glucocorticoid receptor (GR) to glucocorticoid-responsive elements (GRE). To identify GR-binding sites, we developed a modified yeast one-hybrid system which enables rapid and efficient identification of genomic targets for DNA-binding proteins. The human GR expression vector was transformed into yeast cells containing a library of human genomic fragments cloned upstream of the reporter gene URA3. The genomic fragments with GR-binding sites were identified by growth of yeast clones in media lacking uracil but containing dexamethasone. DNA fragments were recovered by colony-direct PCR and GRE sequences were predicted by in silico analysis. Using electrophoretic mobility shift assay and fluorescence correlation spectroscopy, we demonstrated that 314 predicted GREs could directly interact with recombinant human GR proteins. In addition, when the genomic fragments were inserted in front of the heterologous SV40 promoter, at least 150 fragments could function as GREs in HEK293 cells. Furthermore, we identified four functional regulatory polymorphisms which may influence individual variation in sensitivity to glucocorticoids. These results provide insights into the molecular mechanisms underlying the physiological and pathological actions of glucocorticoid.

摘要

糖皮质激素通过配体激活的糖皮质激素受体(GR)与糖皮质激素反应元件(GRE)结合来调节基因表达。为了鉴定GR结合位点,我们开发了一种改良的酵母单杂交系统,该系统能够快速、高效地鉴定DNA结合蛋白的基因组靶点。将人GR表达载体转化到含有克隆在报告基因URA3上游的人类基因组片段文库的酵母细胞中。通过酵母克隆在缺乏尿嘧啶但含有地塞米松的培养基中的生长来鉴定具有GR结合位点的基因组片段。通过菌落直接PCR回收DNA片段,并通过计算机分析预测GRE序列。使用电泳迁移率变动分析和荧光相关光谱法,我们证明314个预测的GRE可以直接与重组人GR蛋白相互作用。此外,当将基因组片段插入异源SV40启动子之前时,至少150个片段可以在HEK293细胞中作为GRE发挥作用。此外,我们鉴定了四个功能性调节多态性,它们可能影响个体对糖皮质激素敏感性的差异。这些结果为糖皮质激素生理和病理作用的分子机制提供了见解。

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