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芳烃受体中的一个四肽重复半位点对DNA结合和反式激活潜能很重要。

A tetratricopeptide repeat half-site in the aryl hydrocarbon receptor is important for DNA binding and trans-activation potential.

作者信息

Levine S L, Petrulis J R, Dubil A, Perdew G H

机构信息

Center for Molecular Toxicology and Carcinogenesis, Department of Veterinary Science, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

Mol Pharmacol. 2000 Dec;58(6):1517-24. doi: 10.1124/mol.58.6.1517.

Abstract

Similar to certain unliganded steroid hormone receptor complexes, the unliganded aryl hydrocarbon receptor has been shown to consist of a multimeric core complex that includes the 90-kDa heat shock protein (hsp90) and the immunophilin-like hepatitis B X-associated protein 2 (XAP2). Immunophilins and XAP2 associated with these complexes bind to the carboxyl-terminal end of hsp90 through an interaction with their tetratricopeptide repeat (TPR) domains. The consensus TPR binding motif contains two domains, A and B. Recently, the carboxyl terminus of XAP2 has been shown to contain a highly conserved TPR domain that is required for the assembly of XAP2 with both hsp90 and AhR. A search of the murine AhR sequence identified domain B (A-F-A-P) of the consensus TPR sequence directly adjacent to the carboxyl-terminal side of the helix-loop-helix region of the murine and human AhR. We hypothesized that this conserved domain B region may be involved with mediating interactions between either AhR-hsp90, AhR-XAP2, and/or AhR-AhR nuclear translocator protein. Site-directed mutagenesis of the amino-terminal alanine residue of this region to an aspartic acid (A78D) completely inhibited 2,3,7, 8-tetrachloro-p-dioxin (TCDD) -dependent activation of a xenobiotic response element (XRE) driven gene expression construct in transfected COS-1 and BP8 cells. The A82F mutation caused a 40 to 50% decrease in TCDD-dependent activation. The inability of A78D and the reduction of A82F to trans-activate XRE-driven reporter activity did not result from impaired AhR-XAP2-hsp90 interactions, TCDD-dependent AhR translocation to the nucleus, or AhR-AhR nuclear translocator protein interactions. In vitro DNA binding analysis demonstrated that loss of trans-activation potential by the A78D mutation resulted from impaired XRE binding. This study underscores the potential importance of AhR mutations that occur naturally outside of known functional domains.

摘要

与某些未结合配体的类固醇激素受体复合物相似,未结合配体的芳烃受体已被证明由一个多聚体核心复合物组成,该复合物包括90 kDa热休克蛋白(hsp90)和免疫亲和素样乙肝X相关蛋白2(XAP2)。与这些复合物相关的免疫亲和素和XAP2通过与其四肽重复(TPR)结构域的相互作用,结合到hsp90的羧基末端。共有TPR结合基序包含A和B两个结构域。最近,已证明XAP2的羧基末端含有一个高度保守的TPR结构域,这是XAP2与hsp90和芳烃受体(AhR)组装所必需的。对小鼠AhR序列的搜索确定了共有TPR序列的结构域B(A - F - A - P),其直接毗邻小鼠和人类AhR螺旋-环-螺旋区域的羧基末端一侧。我们推测,这个保守的结构域B区域可能参与介导AhR - hsp90、AhR - XAP2和/或AhR - AhR核转运蛋白之间的相互作用。将该区域氨基末端的丙氨酸残基定点突变为天冬氨酸(A78D),完全抑制了转染的COS - 1和BP8细胞中2,3,7,8 - 四氯对二噁英(TCDD)依赖性的外源物反应元件(XRE)驱动的基因表达构建体的激活。A82F突变导致TCDD依赖性激活降低40%至50%。A78D无法激活以及A82F激活能力降低并非由于AhR - XAP2 - hsp90相互作用受损、TCDD依赖性AhR转运至细胞核或AhR - AhR核转运蛋白相互作用所致。体外DNA结合分析表明,A78D突变导致的反式激活潜能丧失是由于XRE结合受损。这项研究强调了在已知功能域外自然发生的AhR突变的潜在重要性。

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