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Structure of the Progesterone Receptor-Deoxyribonucleic Acid Complex: Novel Interactions Required for Binding to Half-Site Response Elements

机译:孕酮受体-脱氧核糖核酸复合物的结构:绑定到半站响应元素所需的新型相互作用。

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摘要

The DNA binding domain (DBD) of nuclear hormone receptors contains a highly conserved globular domain and a less conserved carboxyl-terminal extension (CTE). Despite previous observations that the CTEs of some classes of nuclear receptors are structured and interact with DNA outside of the hexanucleotide hormone response element (HRE), there has been no evidence for such a CTE among the steroid receptors. We have determined the structure of the progesterone receptor (PR)-DBD-CTE DNA complex at a resolution of 2.5 Å, which revealed binding of the CTE to the minor groove flanking the HREs. Alanine substitutions of the interacting CTE residues reduced affinity for inverted repeat HREs separated by three nucleotides, and essentially abrogated binding to a single HRE. A highly compressed minor groove of the trinucleotide spacer and a novel dimerization interface were also observed. A PR binding site selection experiment revealed sequence preferences in the trinucleotide spacer and flanking DNA. These results, taken together, support the notion that sequences outside of the HREs influence the DNA binding affinity and specificity of steroid receptors.
机译:核激素受体的DNA结合结构域(DBD)包含高度保守的球状结构域和较少保守的羧基末端延伸(CTE)。尽管先前观察到某些类别的核受体的CTE是结构化的并且与六核苷酸激素反应元件(HRE)外部的DNA相互作用,但尚无任何类固醇受体中CTE的证据。我们已经确定了孕酮受体(PR)-DBD-CTE DNA复合物的结构,其分辨率为2.5Å,表明CTE与HRE两侧的小沟结合。相互作用的CTE残基的丙氨酸取代降低了对被三个核苷酸分隔的反向重复HRE的亲和力,并且基本上取消了与单个HRE的结合。还观察到三核苷酸间隔物的高度压缩的小沟和新颖的二聚化界面。 PR结合位点选择实验揭示了三核苷酸间隔子和侧翼DNA中的序列偏好。这些结果加在一起,支持了HRE外部序列影响类固醇受体的DNA结合亲和力和特异性的观点。

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