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鉴定 ARNT PAS-B 结构域表面和内部的小分子配体结合位点。

Identification of small-molecule ligand-binding sites on and in the ARNT PAS-B domain.

机构信息

Structural Biology Initiative, CUNY Advanced Science Research Center, New York, New York, USA; PhD Program in Biochemistry, The Graduate Center, CUNY, New York, New York, USA.

Structural Biology Initiative, CUNY Advanced Science Research Center, New York, New York, USA.

出版信息

J Biol Chem. 2024 Sep;300(9):107606. doi: 10.1016/j.jbc.2024.107606. Epub 2024 Jul 24.

Abstract

Transcription factors are challenging to target with small-molecule inhibitors due to their structural plasticity and lack of catalytic sites. Notable exceptions include naturally ligand-regulated transcription factors, including our prior work with the hypoxia-inducible factor (HIF)-2 transcription factor, showing that small-molecule binding within an internal pocket of the HIF-2α Per-Aryl hydrocarbon Receptor Nuclear Translocator (ARNT)-Sim (PAS)-B domain can disrupt its interactions with its dimerization partner, ARNT. Here, we explore the feasibility of targeting small molecules to the analogous ARNT PAS-B domain itself, potentially opening a promising route to modulate several ARNT-mediated signaling pathways. Using solution NMR fragment screening, we previously identified several compounds that bind ARNT PAS-B and, in certain cases, antagonize ARNT association with the transforming acidic coiled-coil containing protein 3 transcriptional coactivator. However, these ligands have only modest binding affinities, complicating characterization of their binding sites. We address this challenge by combining NMR, molecular dynamics simulations, and ensemble docking to identify ligand-binding "hotspots" on and within the ARNT PAS-B domain. Our data indicate that the two ARNT/transforming acidic coiled-coil containing protein 3 inhibitors, KG-548 and KG-655, bind to a β-sheet surface implicated in both HIF-2 dimerization and coactivator recruitment. Furthermore, while KG-548 binds exclusively to the β-sheet surface, KG-655 can additionally bind within a water-accessible internal cavity in ARNT PAS-B. Finally, KG-279, while not a coactivator inhibitor, exemplifies ligands that preferentially bind only to the internal cavity. All three ligands promoted ARNT PAS-B homodimerization, albeit to varying degrees. Taken together, our findings provide a comprehensive overview of ARNT PAS-B ligand-binding sites and may guide the development of more potent coactivator inhibitors for cellular and functional studies.

摘要

转录因子由于其结构的可变性和缺乏催化位点,因此用小分子抑制剂进行靶向治疗具有挑战性。值得注意的例外包括天然配体调节的转录因子,包括我们之前在缺氧诱导因子 (HIF)-2 转录因子方面的工作,表明小分子结合在 HIF-2α 芳香烃受体核转位蛋白 (ARNT)-Sim (PAS)-B 结构域的内部口袋内可以破坏其与二聚化伴侣 ARNT 的相互作用。在这里,我们探索了将小分子靶向到类似的 ARNT PAS-B 结构域本身的可行性,这可能为调节几种 ARNT 介导的信号通路开辟了一条有希望的途径。使用溶液 NMR 片段筛选,我们之前鉴定了几种与 ARNT PAS-B 结合的化合物,在某些情况下,它们拮抗 ARNT 与转化酸性卷曲螺旋蛋白 3 转录共激活因子的结合。然而,这些配体的结合亲和力只有中等,这使得它们的结合位点的特征复杂化。我们通过结合 NMR、分子动力学模拟和整体对接来解决这一挑战,以确定 ARNT PAS-B 域上和内部的配体结合“热点”。我们的数据表明,两种 ARNT/转化酸性卷曲螺旋蛋白 3 抑制剂 KG-548 和 KG-655 结合到一个β-折叠表面,该表面涉及 HIF-2 二聚化和共激活因子募集。此外,虽然 KG-548 仅结合到β-折叠表面,但 KG-655 还可以结合到 ARNT PAS-B 中的一个可及水分子内部腔中。最后,虽然 KG-279 不是共激活因子抑制剂,但它代表了优先仅结合到内部腔的配体。所有三种配体都促进了 ARNT PAS-B 同源二聚体的形成,尽管程度不同。总之,我们的研究结果提供了 ARNT PAS-B 配体结合位点的全面概述,并可能为细胞和功能研究中更有效的共激活因子抑制剂的开发提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e18f/11381877/16a6b33bb146/gr1.jpg

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