Diverse roles of androgen receptor (AR) domains in AR-mediated signaling.

Frank Claessens, Sarah Denayer, Nora Van Tilborgh, Stefanie Kerkhofs, Christine Helsen, Annemie Haelens
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Abstract

Androgens control male sexual development and maintenance of the adult male phenotype. They have very divergent effects on their target organs like the reproductive organs, muscle, bone, brain and skin. This is explained in part by the fact that different cell types respond differently to androgen stimulus, even when all these responses are mediated by the same intracellular androgen receptor. To understand these tissue- and cell-specific readouts of androgens, we have to learn the many different steps in the transcription activation mechanisms of the androgen receptor (NR3C4). Like all nuclear receptors, the steroid receptors have a central DNA-binding domain connected to a ligand-binding domain by a hinge region. In addition, all steroid receptors have a relatively large amino-terminal domain. Despite the overall structural homology with other nuclear receptors, the androgen receptor has several specific characteristics which will be discussed here. This receptor can bind two types of androgen response elements (AREs): one type being similar to the classical GRE/PRE-type elements, the other type being the more divergent and more selective AREs. The hormone-binding domain has low intrinsic transactivation properties, a feature that correlates with the low affinity of this domain for the canonical LxxLL-bearing coactivators. For the androgen receptor, transcriptional activation involves the alternative recruitment of coactivators to different regions in the amino-terminal domain, as well as the hinge region. Finally, a very strong ligand-induced interaction between the amino-terminal domain and the ligand-binding domain of the androgen receptor seems to be involved in many aspects of its function as a transcription factor. This review describes the current knowledge on the structure-function relationships within the domains of the androgen receptor and tries to integrate the involvement of different domains, subdomains and motifs in the functioning of this receptor as a transcription factor with tissue- and cell-specific readouts.

Abstract Image

Abstract Image

雄激素受体(AR)结构域在 AR 介导的信号传导中发挥着不同的作用。
雄激素控制着男性的性发育和成年男性表型的维持。雄性激素对生殖器官、肌肉、骨骼、大脑和皮肤等靶器官的影响各不相同。即使所有这些反应都由相同的细胞内雄激素受体介导,不同类型的细胞对雄激素刺激的反应也不尽相同。要了解这些组织和细胞对雄激素的特异性反应,我们必须了解雄激素受体(NR3C4)转录激活机制的许多不同步骤。与所有核受体一样,类固醇受体有一个中央 DNA 结合域,通过铰链区与配体结合域相连。此外,所有类固醇受体都有一个相对较大的氨基末端结构域。尽管雄激素受体与其他核受体在整体结构上具有同源性,但它仍有一些特殊的特征,在此将对这些特征进行讨论。这种受体可以结合两种类型的雄激素反应元件(AREs):一种类型与经典的 GRE/PRE 型元件类似,另一种类型则是差异更大、选择性更强的 AREs。激素结合结构域具有较低的内在转录激活特性,这一特性与该结构域对典型的 LxxLL 辅助激活因子的低亲和力有关。对于雄激素受体来说,转录激活涉及到辅助激活因子在氨基末端结构域的不同区域以及铰链区域的替代招募。最后,雄激素受体的氨基末端结构域和配体结合结构域之间由配体诱导的强烈相互作用似乎参与了其作为转录因子功能的许多方面。这篇综述介绍了目前有关雄激素受体结构域内结构-功能关系的知识,并试图将不同结构域、亚结构域和基团参与该受体作为转录因子的功能与组织和细胞特异性读数结合起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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