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配体诱导的 HIF-2α:ARNT 二聚体动力学扰动。

Ligand-induced perturbation of the HIF-2α:ARNT dimer dynamics.

机构信息

Department of Earth and Environmental Sciences, University of Milano-Bicocca, Milan, Italy.

Department of Immunology, Transplantation, and Infectious Diseases, DIBIT Fondazione San Raffaele, Milan, Italy.

出版信息

PLoS Comput Biol. 2018 Feb 28;14(2):e1006021. doi: 10.1371/journal.pcbi.1006021. eCollection 2018 Feb.

Abstract

Hypoxia inducible factors (HIFs) are transcription factors belonging to the basic helix-loop-helix PER-ARNT-SIM (bHLH-PAS) protein family with a role in sensing oxygen levels in the cell. Under hypoxia, the HIF-α degradation pathway is blocked and dimerization with the aryl hydrocarbon receptor nuclear translocator (ARNT) makes HIF-α transcriptionally active. Due to the common hypoxic environment of tumors, inhibition of this mechanism by destabilization of HIF-α:ARNT dimerization has been proposed as a promising therapeutic strategy. Following the discovery of a druggable cavity within the PAS-B domain of HIF-2α, research efforts have been directed to identify artificial ligands that can impair heterodimerization. Although the crystallographic structures of the HIF-2α:ARNT complex have elucidated the dimer architecture and the 0X3-inhibitor placement within the HIF-2α PAS-B, unveiling the inhibition mechanism requires investigation of how ligand-induced perturbations could dynamically propagate through the structure and affect dimerization. To this end, we compared evolutionary features, intrinsic dynamics and energetic properties of the dimerization interfaces of HIF-2α:ARNT in both the apo and holo forms. Residue conservation analysis highlighted inter-domain connecting elements that have a role in dimerization. Analysis of domain contributions to the dimerization energy demonstrated the importance of bHLH and PAS-A of both partners and of HIF-2α PAS-B domain in dimer stabilization. Among quaternary structure oscillations revealed by Molecular Dynamics simulations, the hinge-bending motion of the ARNT PAS-B domain around the flexible PAS-A/PAS-B linker supports a general model for ARNT dimerization in different heterodimers. Comparison of the HIF-2α:ARNT dynamics in the apo and 0X3-bound forms indicated a model of inhibition where the HIF-2α-PAS-B interfaces are destabilised as a result of water-bridged ligand-protein interactions and these local effects allosterically propagate to perturb the correlated motions of the domains and inter-domain communication. These findings will guide the design of improved inhibitors to contrast cell survival in tumor masses.

摘要

缺氧诱导因子 (HIFs) 是属于基本螺旋-环-螺旋转录因子 (bHLH-PAS) 蛋白家族的转录因子,在细胞中对氧水平的感应中发挥作用。在缺氧下,HIF-α 的降解途径被阻断,与芳香烃受体核转位蛋白 (ARNT) 形成二聚体使 HIF-α 转录活性增强。由于肿瘤的共同缺氧环境,通过破坏 HIF-α:ARNT 二聚体的稳定性来抑制这种机制已被提出作为一种有前途的治疗策略。在发现 HIF-2α 的 PAS-B 结构域内可成药的空腔后,研究工作已致力于鉴定可损害异二聚化的人工配体。尽管 HIF-2α:ARNT 复合物的晶体结构阐明了二聚体结构和 OX3 抑制剂在 HIF-2α PAS-B 内的位置,但揭示抑制机制需要研究配体诱导的扰动如何通过结构动态传播并影响二聚化。为此,我们比较了 HIF-2α:ARNT 在apo 和 holo 形式下的二聚化界面的进化特征、固有动力学和能量特性。残基保守性分析突出了在二聚化中起作用的结构域连接元件。对二聚化能量的结构域贡献分析表明了 bHLH 和 PAS-A 对两个伴侣以及 HIF-2α PAS-B 结构域在二聚体稳定中的重要性。分子动力学模拟揭示的四级结构振荡中,ARNT PAS-B 结构域围绕柔性 PAS-A/PAS-B 接头的铰链弯曲运动支持了不同异二聚体中 ARNT 二聚化的一般模型。在 apo 和 OX3 结合形式下的 HIF-2α:ARNT 动力学比较表明,抑制模型中 HIF-2α-PAS-B 界面由于水桥连配体-蛋白相互作用而失稳,这些局部效应通过变构方式传播,扰乱了结构域的相关运动和结构域间的通讯。这些发现将指导设计改进的抑制剂,以抑制肿瘤团块中的细胞存活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18a9/5847239/857a3e656b61/pcbi.1006021.g001.jpg

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