Structural insights into retinoic acid receptor activation and selective modulators

Yining Song, Wenrui Zhao, Xuan Huang, Lai Wei, Jingyi Han, Jiayun Hou, Min Li, Xin Cao
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Abstract

Retinoic acid receptors (RARs), including RARα, RARβ and RARγ, serve as essential nuclear receptors that act as transcription factors activated by ligands. They predominantly regulate gene expression and affect various biological processes, including differentiation. Their dysregulation is implicated in various cancers and other diseases, notably acute promyelocytic leukaemia (APL), where the promyelocytic leukemia (PML)‒RARα fusion protein disrupts normal granulocyte maturation. All-trans retinoic acid, which promotes the degradation of this fusion protein is a key therapeutic agent for APL and is also involved in the treatment of other diseases. Recently, various selective RAR modulators targeting specific RAR subtypes have been developed, which show promise in treating cancer and other diseases. The structural biology of RARs reveals how ligand binding induces conformational changes that facilitate co-activator recruitment, thereby modulating transcription. This review explores the crystal structures of RARs in various activation states, detailing RARs’ interactions with retinoid X receptors, ligands, DNA and co-regulators, and emphasises the importance of understanding these mechanisms for the rational design of new RAR-targeted therapies. The potential for developing selective RAR modulators is highlighted, along with the need for comprehensive structural data to enhance our understanding of RAR functions in disease contexts. Future research directions include utilising advanced imaging techniques and artificial intelligence-driven predictions to elucidate the dynamics of RAR complexes, ultimately aiming to translate structural insights into clinical applications for various diseases.

Abstract Image

维甲酸受体激活和选择性调节剂的结构见解
视黄酸受体(RARs)包括RARα、RARβ和RARγ,是必不可少的核受体,可作为配体激活的转录因子。它们主要调节基因表达并影响各种生物过程,包括分化。它们的失调与各种癌症和其他疾病有关,特别是急性早幼粒细胞白血病(APL),其中早幼粒细胞白血病(PML) -RARα融合蛋白破坏正常的粒细胞成熟。促进该融合蛋白降解的全反式维甲酸是APL的关键治疗剂,也参与其他疾病的治疗。近年来,针对特定RAR亚型的各种选择性RAR调节剂被开发出来,在治疗癌症和其他疾病方面显示出前景。RARs的结构生物学揭示了配体结合如何诱导构象变化,从而促进共激活剂的招募,从而调节转录。本文探讨了各种激活状态下RARs的晶体结构,详细介绍了RARs与类视黄酮X受体、配体、DNA和协同调节因子的相互作用,并强调了了解这些机制对合理设计新的rar靶向治疗的重要性。本文强调了开发选择性RAR调节剂的潜力,以及对全面结构数据的需求,以增强我们对疾病背景下RAR功能的理解。未来的研究方向包括利用先进的成像技术和人工智能驱动的预测来阐明RAR复合物的动力学,最终旨在将结构见解转化为各种疾病的临床应用。
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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