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Computer Simulations of the Retinoid X Receptor: Conformational Dynamics and Allosteric Networks

机译:维护X受体的计算机模拟:构象动态和变构网络

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摘要

As the heterodimerization partner for a large number of nuclear receptors, the retinoid X receptor (RXR) is important for a large and diverse set of biochemical pathways. Activation and regulation of RXR heterodimers is achieved by complex allosteric mechanisms, which involve the binding of ligands, DNA, coactivators and corepressors, and entail large and subtle conformational motions. Complementing experiments, computer simulations have provided detailed insights into the origins of the allostery by investigating the changes in structure, motion, and interactions upon dimerization, ligand and cofactor binding. This review will summarize a number of simulation studies that have furthered the understanding of the conformational dynamics and the allosteric activation and control of RXR complexes. While the review focuses on the RXR and RXR heterodimers, relevant simulation studies of other nuclear receptors will be discussed as well.
机译:作为大量核受体的异二聚体伴侣,视网膜X受体(RXR)对于大型和多样化的生物化学途径是重要的。 通过复杂的变形机制实现RXR异二聚体的激活和调节,其涉及配体,DNA,共膜剂和芯压机的结合,并因此具有大而微妙的构象运动。 补充实验,计算机模拟通过研究二聚化,配体和辅因子结合的结构,运动和相互作用的变化,提供了对古代同胞的起源的详细洞察。 该审查将总结一些仿真研究,进一步了解了对综合动态和rxR复合物的构型动力学和变构激活和控制。 虽然审查重点讨论RXR和RXR异说者,但也将讨论其他核受体的相关模拟研究。

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