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探究与MDM2结合的单链和双链订书钉式p53肽类似物结构稳定性的起源。

Probing the origin of structural stability of single and double stapled p53 peptide analogs bound to MDM2.

作者信息

Guo Zuojun, Streu Kristina, Krilov Goran, Mohanty Udayan

机构信息

Department of Chemistry, Boston College, 2609 Beacon Street, Chestnut Hill, MA, 02467, USA; Genomics Institute of the Novartis Research Foundation, 10675 John Jay Hopkins Dr., San Diego, CA, 92121, USA.

出版信息

Chem Biol Drug Des. 2014 Jun;83(6):631-42. doi: 10.1111/cbdd.12284.

Abstract

The stabilization of secondary structure is believed to play an important role in the peptide-protein binding interaction. In this study, the α-helical conformation and structural stability of single and double stapled all-hydrocarbon cross-linked p53 peptides when bound and unbound to MDM2 are investigated. We determined the effects of the peptide sequence, the stereochemistry of the cross-linker, the conformation of the double bond in the alkene bridge, and the length of the bridge, to the relative stability of the α-helix structure. The binding affinity calculations by WaterMap provided over one hundred hydration sites in the MDM2 binding pocket where water density is greater than twice that of the bulk, and the relative value of free energy released by displacing these hydration sites. In agreement with the experimental data, potentials of mean force obtained by weighted histogram analysis methods indicated the order of peptides from lowest to highest binding affinity. Our study provides a comprehensive rationalization of the relationship between peptide stapling strategy, the secondary structural stability, and the binding affinity of p53/MDM2 complex. We hope our efforts can help to further the development of a new generation p53/MDM2 inhibitors that can reactivate the function of p53 as tumor suppressor gene.

摘要

二级结构的稳定被认为在肽 - 蛋白质结合相互作用中起着重要作用。在本研究中,我们研究了单链和双链全碳交联p53肽在与MDM2结合和未结合时的α - 螺旋构象和结构稳定性。我们确定了肽序列、交联剂的立体化学、烯烃桥中双键的构象以及桥的长度对α - 螺旋结构相对稳定性的影响。通过WaterMap进行的结合亲和力计算在MDM2结合口袋中提供了一百多个水合位点,这些位点的水密度大于本体水密度的两倍,以及取代这些水合位点所释放的自由能的相对值。与实验数据一致,通过加权直方图分析方法获得的平均力势表明了肽从最低到最高结合亲和力的顺序。我们的研究全面阐述了肽环化策略、二级结构稳定性与p53/MDM2复合物结合亲和力之间的关系。我们希望我们的努力能够有助于进一步开发新一代的p53/MDM2抑制剂,这些抑制剂能够重新激活作为肿瘤抑制基因的p53的功能。

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