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含环戊烯的肽衍生化合物的实验与计算研究:聚焦于通过分子内相互作用形成的假环基序

An experimental and computational investigation of the cyclopentene-containing peptide-derived compounds: focus on pseudo-cyclic motifs via intramolecular interactions.

作者信息

Bojarska Joanna, Breza Martin, Borowiecki Paweł, Madura Izabela D, Kaczmarek Krzysztof, Ziora Zyta M, Wolf Wojciech M

机构信息

Chemistry Department, Institute of Ecological and Inorganic Chemistry, Technical University of Lodz, 116 Zeromskiego St., Lodz 90-924, Poland.

Department of Physical Chemistry, Slovak Technical University, Radlinskeho 9, Bratislava SK-81237, Slovakia.

出版信息

R Soc Open Sci. 2024 Oct 9;11(10):40962. doi: 10.1098/rsos.240962. eCollection 2024 Oct.

Abstract

Conformational flexibility is one of the main disadvantages of peptide-based compounds. We focus on their molecular 'chameleonicity' related to forming pseudo-cyclic motifs via modulation of weak intramolecular interactions. It is an appealing strategy for controlling equilibrium between the polar open and the nonpolar closed conformations. Within this context, we report here the crystal structure of the ()-(2--butoxycarbonyl)amino-1-oxo-3-phenyl)propyl)-1-cyclopentene (), synthesis of which in high yield was achieved by a facile multi-step protocol. Our Cambridge Structural Database (CSD) overview for the peptide-based crystals revealed the exclusivity of this compound from the viewpoint of the unusual pseudo-bicyclic system via C-HO and C-Oπ interactions, in which cyclopentene shields the amide bond. Notably, cyclopentene as a bioisostere of proline is an appealing scaffold in medicinal chemistry. An extensive combined experimental and computational study provided more profound insight into the supramolecular landscape of with respect to similar derivatives deposited in the CSD, including the tendency of cyclopentene for the generation of pseudo-cyclic motifs through weak H-bonding and π-based intramolecular interactions. These weak interactions have been examined by either the quantum theory of 'atoms-in-molecules' (QTAIM) or complex Hirshfeld surface methodology, including enrichment ratios, molecular electrostatic potential surfaces and energy frameworks. In all analysed crystals, all types of H-bonded motifs involving cyclopentene are formed at all levels of supramolecular architecture. A library of cyclopentene-based H-bonding synthons is provided. A molecular docking study depicted vital interactions of cyclopentene with key amino acid residues inside the active sites of two prominent protein kinases, uncovering the therapeutic potential of against breast cancer. To a large extent, dispersion forces have significance in stabilizing the supramolecular structure of both ligand and bio-complex ligand-protein. Finally, the satisfactory bio-pharmacokinetic profile of related to drug-likeness and blood-brain barrier permeation was also revealed.

摘要

构象灵活性是基于肽的化合物的主要缺点之一。我们关注它们通过调节弱分子内相互作用形成假环基序的分子“变色龙特性”。这是控制极性开放构象和非极性封闭构象之间平衡的一种有吸引力的策略。在此背景下,我们在此报告()-(2-丁氧基羰基)氨基-1-氧代-3-苯基)丙基)-1-环戊烯的晶体结构,其通过简便的多步方案以高产率合成。我们对基于肽的晶体的剑桥结构数据库(CSD)概述从通过C-HO和C-Oπ相互作用形成的不寻常假双环系统的角度揭示了该化合物的独特性,其中环戊烯屏蔽了酰胺键。值得注意的是,环戊烯作为脯氨酸的生物电子等排体在药物化学中是一个有吸引力的支架。广泛的实验和计算相结合的研究提供了关于与CSD中沉积的类似衍生物相比的超分子格局的更深刻见解,包括环戊烯通过弱氢键和基于π的分子内相互作用产生假环基序的趋势。这些弱相互作用已通过“分子中的原子”量子理论(QTAIM)或复杂的 Hirshfeld 表面方法进行了研究,包括富集比、分子静电势表面和能量框架。在所有分析的晶体中,涉及环戊烯的所有类型的氢键基序在超分子结构的各个层面都形成了。提供了一个基于环戊烯的氢键合成子库。分子对接研究描绘了环戊烯与两种重要蛋白激酶活性位点内关键氨基酸残基的重要相互作用,揭示了其对乳腺癌的治疗潜力。在很大程度上,色散力对于稳定配体和生物复合物配体-蛋白质的超分子结构具有重要意义。最后,还揭示了与药物相似性和血脑屏障渗透相关的令人满意的生物药代动力学概况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/708b/11462612/92d0ea4b23df/rsos.240962.f012.jpg

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