In silico study the interaction of heterocyclic bases with peptide moieties of proteins in the "fragment-to-fragment" approach

Yevheniia Velihina, N. Obernikhina, S. Pilyo, M. Kachaeva, O. Kachkovsky
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引用次数: 1

Abstract

The binding affinity of model peptide moieties (Pept) and heterocyclic bases involving 1,3-oxazoles that are condensed with pyridine and pyrimidine as pharmacophores (Pharm) was investigated in silico and analyzed within the «fragment-to-fragment» approach. The anellation of the heterocyclic rings increasing their acceptor properties is accompanied by gaining stability of the [Pharm-Pept] complexes formed by the π,π-stacking interaction. It was found that elongation of the polypeptide chain led to a twofold increase of the stabilization energy of the [Pharm-Pept] complexes. The stability of the hydrogen bonding ([HB]) [Pharm-BioM] complexes formed by means of the interaction between the dicoordinated nitrogen atom of the heterocycle and the functional groups of peptide amino acids (-OH, -NH2, -SH) was evaluated. It was demonstrated that [HB]-complexes that were formed by hydrogen bonds formation with amino acid that contained OH groups had the largest stabilization effect. The anellation with pyridine and pyrimidine rings led to stability increase of the complexes formed by the hydrogen bonding mechanism. The binding energy of [HB]-complexes for compounds 2b and 3 with a «free» peptide bond of the extended part of the protein is lower compared to amino acids with OH-functional groups. On the contrary, the binding energy of compound 4 with peptides was 2 kcal/mol higher. Compound 4 demonstrated the most pronounced biological activity in vitro studies.
用“片段到片段”的方法研究杂环碱基与蛋白质肽段的相互作用
模型肽段(Pept)和含有1,3-恶唑的杂环碱基(与吡啶和嘧啶凝聚为药效团(Pharm))的结合亲和力在硅片上进行了研究,并采用“片段到片段”的方法进行了分析。杂环的环状化增加了它们的受体性质,同时π,π-堆叠相互作用形成的[药学- pept]复合物的稳定性得到提高。研究发现,多肽链的延长导致[药学- pept]配合物的稳定能增加两倍。评价了杂环上的二配位氮原子与肽氨基酸官能团(-OH, -NH2, -SH)相互作用形成的氢键([HB]) [pharma - biom]配合物的稳定性。结果表明,与含有OH基团的氨基酸形成氢键形成的[HB]-配合物具有最大的稳定作用。吡啶环和嘧啶环的环化使配合物的稳定性提高。与具有oh官能团的氨基酸相比,具有蛋白质延伸部分的“自由”肽键的化合物2b和3的[HB]-配合物的结合能较低。相反,化合物4与肽的结合能高出2 kcal/mol。化合物4在体外研究中表现出最显著的生物活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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