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维生素D受体与视黄酸及视黄醇X受体异源二聚化的反应元件选择性。

Response element selectivity for heterodimerization of vitamin D receptors with retinoic acid and retinoid X receptors.

作者信息

Schräder M, Müller K M, Becker-André M, Carlberg C

机构信息

Clinique de Dermatologie, Hôpital Cantonal Universitaire, Genève, Switzerland.

出版信息

J Mol Endocrinol. 1994 Jun;12(3):327-39. doi: 10.1677/jme.0.0120327.

DOI:10.1677/jme.0.0120327
PMID:7916971
Abstract

The transcription of vitamin D (VD) responsive genes is regulated by three different nuclear signalling pathways mediated by homodimers of VD receptors (VDRs), heterodimers of VDRs and retinoid X receptors (RXRs) and heterodimers of VDRs with retinoic acid receptors (RARs), Here, the in vitro DNA-binding affinity of all three receptor complexes was shown to be enhanced by the presence of VD. However, the specificity of the three pathways was dictated by the differential affinities of the receptor complexes for VD response elements. Potential response elements were distinguished by the sequence, the separation and the relative orientation of the hexameric core binding motifs. It was found that both VDR-RAR and VDR-RXR heterodimers act functionally on all three response element configurations: direct repeats, palindromes and inverted palindromes. With direct repeats, neither heterodimer type showed a preference for any of the three principal core motifs, (A/G)GGTGA, (A/G)GGTCA and (A/G)GTTCA. However, while they did exhibit preferences for core motifs in palindromes, the spacing requirements were identical for both complexes. Inverted palindromes, however, formed the most specific response elements. A simple model explains a steric link between the optimal spacing of direct repeats and that of inverted palindromes. Taken together, the experimental data and the model provide further criteria for the screening of VD responsive genes.

摘要

维生素D(VD)反应性基因的转录受三种不同的核信号通路调控,这些通路由VD受体(VDR)的同二聚体、VDR与视黄酸X受体(RXR)的异二聚体以及VDR与视黄酸受体(RAR)的异二聚体介导。在此,所有三种受体复合物的体外DNA结合亲和力在VD存在时均显示增强。然而,这三种通路的特异性由受体复合物对VD反应元件的不同亲和力决定。潜在的反应元件通过六聚体核心结合基序的序列、间距和相对方向来区分。研究发现,VDR-RAR和VDR-RXR异二聚体在所有三种反应元件构型(直接重复、回文和反向回文)上均发挥功能作用。对于直接重复序列,两种异二聚体类型对三种主要核心基序(A/G)GGTGA、(A/G)GGTCA和(A/G)GTTCA均无偏好。然而,虽然它们在回文中确实对核心基序有偏好,但两种复合物的间距要求相同。然而,反向回文形成了最特异的反应元件。一个简单的模型解释了直接重复序列的最佳间距与反向回文序列的最佳间距之间的空间联系。综上所述,实验数据和模型为筛选VD反应性基因提供了进一步的标准。

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