Casado-Combreras Miguel Á, Rivero-Rodríguez Francisco, Elena-Real Carlos A, Molodenskiy Dmitry, Díaz-Quintana Antonio, Martinho Marlène, Gerbaud Guillaume, González-Arzola Katiuska, Velázquez-Campoy Adrián, Svergun Dmitri, Belle Valérie, De la Rosa Miguel A, Díaz-Moreno Irene
Institute for Chemical Research (IIQ), Scientific Research Centre "Isla de la Cartuja" (cicCartuja), University of Seville and CSIC, Avda. Américo Vespucio, 49, 41092 Seville, Spain.
Centre de Biologie Structurale (CBS), INSERM, Centre National de la Recherche Scientifique (CNRS) and Université de Montpellier. 29 rue de Navacelles, 34090 Montpellier, France.
Comput Struct Biotechnol J. 2022 Jul 8;20:3695-3707. doi: 10.1016/j.csbj.2022.07.009. eCollection 2022.
Intrinsic protein flexibility is of overwhelming relevance for intermolecular recognition and adaptability of highly dynamic ensemble of complexes, and the phenomenon is essential for the understanding of numerous biological processes. These conformational ensembles-encounter complexes-lack a unique organization, which prevents the determination of well-defined high resolution structures. This is the case for complexes involving the oncoprotein SET/template-activating factor-Iβ (SET/TAF-Iβ), a histone chaperone whose functions and interactions are significantly affected by its intrinsic structural plasticity. Besides its role in chromatin remodeling, SET/TAF-Iβ is an inhibitor of protein phosphatase 2A (PP2A), which is a key phosphatase counteracting transcription and signaling events controlling the activity of DNA damage response (DDR) mediators. During DDR, SET/TAF-Iβ is sequestered by cytochrome (C) upon migration of the hemeprotein from mitochondria to the cell nucleus. Here, we report that the nuclear SET/TAF-Iβ:C polyconformational ensemble is able to activate PP2A. In particular, the N-end folded, globular region of SET/TAF-Iβ (a.k.a. SET/TAF-Iβ ΔC)-which exhibits an unexpected, intrinsically highly dynamic behavior-is sufficient to be recognized by C in a diffuse encounter manner. C-mediated blocking of PP2A inhibition is deciphered using an integrated structural and computational approach, combining small-angle X-ray scattering, electron paramagnetic resonance, nuclear magnetic resonance, calorimetry and molecular dynamics simulations.
内在蛋白质灵活性对于分子间识别以及复合物高度动态集合体的适应性具有至关重要的意义,并且该现象对于理解众多生物过程必不可少。这些构象集合体——相遇复合物——缺乏独特的组织形式,这使得确定明确的高分辨率结构变得困难。涉及癌蛋白SET/模板激活因子-Iβ(SET/TAF-Iβ)的复合物就是这种情况,SET/TAF-Iβ是一种组蛋白伴侣,其功能和相互作用会受到其内在结构可塑性的显著影响。除了在染色质重塑中的作用外,SET/TAF-Iβ还是蛋白磷酸酶2A(PP2A)的抑制剂,PP2A是一种关键磷酸酶,可对抗控制DNA损伤反应(DDR)介质活性的转录和信号事件。在DDR过程中,当血红素蛋白从线粒体迁移到细胞核时,SET/TAF-Iβ会被细胞色素C隔离。在此,我们报告核SET/TAF-Iβ:C多构象集合体能够激活PP2A。特别是,SET/TAF-Iβ的N端折叠球状区域(即SET/TAF-Iβ ΔC)——表现出意想不到的、内在高度动态的行为——足以以扩散相遇的方式被C识别。使用结合小角X射线散射、电子顺磁共振、核磁共振、量热法和分子动力学模拟的综合结构和计算方法,解析了C介导的对PP2A抑制的阻断作用。