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含S-N环肽形成与结构的计算洞察

Computational Insights into the Formation and Structure of S-N Containing Cyclic Peptides.

作者信息

Karabulut Sedat, Wijerathne Dananjana V, Gauld James W

机构信息

Department of Chemistry and Biochemistry, University of Windsor, Windsor, Ontario N9B 3P4, Canada.

出版信息

ACS Omega. 2023 May 11;8(20):18234-18244. doi: 10.1021/acsomega.3c01764. eCollection 2023 May 23.

Abstract

Cyclic peptides are known to have biologically important roles and may also be applicable to the pharmaceutical and other industries. Furthermore, thiols and amines, which are found throughout biological systems, can react to form S-N bonds and to date, ∼100 biomolecules containing such a bond have been identified. However, while there are in principle numerous S-N containing peptide-derived rings possible, only a few are presently known to occur in biochemical systems. Density functional theory-based calculations have been used to consider the formation and structure of S-N containing cyclic peptides from systematic series of linear peptides in which a cysteinyl has first been oxidized to a sulfenic or sulfonic acid. In addition, the possible effect of the cysteine's vicinal residue on the free energy of formation has also been considered. In general, when the cysteine is first oxidized to a sulfenic acid, only the formation of smaller S-N containing rings is calculated to be exergonic in aqueous solution. In contrast, when the cysteine is first oxidized to a sulfonic acid, the formation of all rings considered (with one exception) is calculated to be endergonic in aqueous solution. The nature of vicinal residue can influence ring formation through stabilizing or destabilizing intramolecular interactions.

摘要

已知环肽具有重要的生物学作用,并且可能也适用于制药和其他行业。此外,在整个生物系统中都能找到的硫醇和胺可以发生反应形成S-N键,迄今为止,已经鉴定出约100种含有这种键的生物分子。然而,虽然原则上可能存在大量含S-N的肽衍生环,但目前已知只有少数在生化系统中出现。基于密度泛函理论的计算已被用于研究由一系列线性肽形成含S-N环肽的过程及其结构,其中半胱氨酸首先被氧化为亚磺酸或磺酸。此外,还考虑了半胱氨酸邻位残基对形成自由能的可能影响。一般来说,当半胱氨酸首先被氧化为亚磺酸时,在水溶液中只有形成较小的含S-N环被计算为放能反应。相反,当半胱氨酸首先被氧化为磺酸时,在水溶液中所有考虑的环(有一个例外)的形成被计算为吸能反应。邻位残基的性质可以通过稳定或破坏分子内相互作用来影响环的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4f8/10210182/6260e3bc1d75/ao3c01764_0002.jpg

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