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HIF2alpha PAS-B 中完全埋藏腔体内配体结合的原理。

Principles of ligand binding within a completely buried cavity in HIF2alpha PAS-B.

机构信息

Department of Biochemistry, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, Texas 75390-8816, USA.

出版信息

J Am Chem Soc. 2009 Dec 9;131(48):17647-54. doi: 10.1021/ja9073062.

Abstract

Hypoxia-inducible factors (HIFs) are heterodimeric transcription factors responsible for the metazoan hypoxia response and promote tumor growth, metastasis, and resistance to cancer treatment. The C-terminal Per-ARNT-Sim (PAS) domain of HIF2alpha (HIF2alpha PAS-B) contains a preformed solvent-inaccessible cavity that binds artificial ligands that allosterically perturb the formation of the HIF heterodimer. To better understand how small molecules bind within this domain, we examined the structures and equilibrium and transition-state thermodynamics of HIF2alpha PAS-B with several artificial ligands using isothermal titration calorimetry, NMR exchange spectroscopy, and X-ray crystallography. Rapid association rates reveal that ligand binding is not dependent upon a slow conformational change in the protein to permit ligand access, despite the closed conformation observed in the NMR and crystal structures. Compensating enthalpic and entropic contributions to the thermodynamic barrier for ligand binding suggest a binding-competent transition state characterized by increased structural disorder. Finally, molecular dynamics simulations reveal conversion between open and closed conformations of the protein and pathways of ligand entry into the binding pocket.

摘要

缺氧诱导因子 (HIFs) 是异二聚体转录因子,负责真核生物缺氧反应,并促进肿瘤生长、转移和对癌症治疗的耐药性。HIF2alpha(HIF2alpha PAS-B)的 C 端过氧物酶体增殖物激活受体-相关蛋白-单一序列(Per-ARNT-Sim,PAS)结构域包含一个预先形成的、溶剂不可进入的腔,该腔可结合变构扰乱 HIF 异二聚体形成的人工配体。为了更好地理解小分子如何在该结构域内结合,我们使用等温滴定量热法、NMR 交换光谱法和 X 射线晶体学研究了几种人工配体与 HIF2alpha PAS-B 的结构、平衡态和过渡态热力学。快速的缔合速率表明,尽管在 NMR 和晶体结构中观察到封闭构象,但配体结合并不依赖于蛋白质的缓慢构象变化以允许配体进入。配体结合热力学障碍的补偿焓和熵贡献表明,结合能力的过渡态具有增加的结构无序性。最后,分子动力学模拟揭示了蛋白质的开放和封闭构象之间的转换以及配体进入结合口袋的途径。

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