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靶向转录因子NF-Y的订书肽的结合动力学

Binding Dynamics of a Stapled Peptide Targeting the Transcription Factor NF-Y.

作者信息

Durukan Canan, Arbore Federica, Klintrot Rasmus, Bigiotti Carlo, Ilie Ioana M, Vreede Jocelyne, Grossmann Tom N, Hennig Sven

机构信息

Department of Chemistry and Pharmaceutical Sciences, VU University Amsterdam, De Boelelaan 1108, 1081 HZ, Amsterdam, The Netherlands.

Amsterdam Institute of Molecular and Life Sciences (AIMMS), VU University Amsterdam, De Boelelaan 1108, 1081 HZ, Amsterdam, The Netherlands.

出版信息

Chembiochem. 2024 May 2;25(9):e202400020. doi: 10.1002/cbic.202400020. Epub 2024 Apr 2.

Abstract

Transcription factors (TFs) play a central role in gene regulation, and their malfunction can result in a plethora of severe diseases. TFs are therefore interesting therapeutic targets, but their involvement in protein-protein interaction networks and the frequent lack of well-defined binding pockets render them challenging targets for classical small molecules. As an alternative, peptide-based scaffolds have proven useful, in particular with an α-helical active conformation. Peptide-based strategies often require extensive structural optimization efforts, which could benefit from a more detailed understanding of the dynamics in inhibitor/protein interactions. In this study, we investigate how truncated stapled α-helical peptides interact with the transcription factor Nuclear Factor-Y (NF-Y). We identified a 13-mer minimal binding core region, for which two crystal structures with an altered C-terminal peptide conformation when bound to NF-Y were obtained. Subsequent molecular dynamics simulations confirmed that the C-terminal part of the stapled peptide is indeed relatively flexible while still showing defined interactions with NF-Y. Our findings highlight the importance of flexibility in the bound state of peptides, which can contribute to overall binding affinity.

摘要

转录因子(TFs)在基因调控中起着核心作用,其功能异常可导致多种严重疾病。因此,转录因子是有趣的治疗靶点,但其参与蛋白质-蛋白质相互作用网络以及常常缺乏明确的结合口袋,使其成为传统小分子难以攻克的靶点。作为一种替代方法,基于肽的支架已被证明是有用的,特别是具有α-螺旋活性构象的支架。基于肽的策略通常需要大量的结构优化工作,而对抑制剂/蛋白质相互作用动力学的更详细了解可能会有助于这些工作。在本研究中,我们研究了截短的钉状α-螺旋肽如何与转录因子核因子-Y(NF-Y)相互作用。我们确定了一个13聚体的最小结合核心区域,并获得了与NF-Y结合时C端肽构象改变的两种晶体结构。随后的分子动力学模拟证实,钉状肽的C端部分确实相对灵活,同时仍与NF-Y表现出明确的相互作用。我们的研究结果突出了肽结合状态下灵活性的重要性,这可能有助于整体结合亲和力。

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