Theoretical study of the interaction between the antibiotic linezolid and the active site of the 50S ribosomal subunit of the bacterium Haloarcula marismortui

IF 2.8 4区 化学 Q2 CHEMISTRY, ANALYTICAL
Chirality Pub Date : 2023-11-14 DOI:10.1002/chir.23629
Giulia Saneti Grandini, Nelson Henrique Morgon, Aguinaldo Robinson de Souza
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Abstract

First antibiotic in the oxazolidinone class, linezolid fights gram-positive multiresistant bacteria by inhibiting protein synthesis through its interaction with the 50S subunit of the functional bacterial ribosome. For its antimicrobial action, it is necessary that its chiral carbon located in the oxazolidinone ring is in the S-conformation. Computational calculation at time-dependent density functional theory methodology, ultraviolet–visible (UV–Vis), and electronic circular dichroism spectra was obtained for noncomplexed and complexed forms of linezolid to verify the possible chirality of nitrogen atom in the acetamide group of the molecule. The molecular system has two chiral centers. So, there are now four possible configurations: RR, RS, SR, and SS. For a better understanding of the system, the electronic spectra at the PBE0/6-311++G(3df,2p) level of theory were obtained. The complexed form was obtained from the crystallographic data of the ribosome, containing the S-linezolid molecular system. The computational results obtained for the electronic properties are in good agreement with the experimental crystallographic data and available theoretical results.

Abstract Image

Abstract Image

抗生素利奈唑胺与marismortui盐环菌50S核糖体亚基活性位点相互作用的理论研究。
利奈唑胺是恶唑烷酮类的第一种抗生素,它通过与功能性细菌核糖体的50S亚基相互作用抑制蛋白质合成,从而对抗革兰氏阳性多重耐药细菌。为了发挥抗菌作用,其手性碳必须位于恶唑烷酮环上呈s构象。对利奈唑胺的非络合形式和络合形式进行了时间依赖密度泛函理论方法、紫外-可见光谱和电子圆二色性计算,验证了分子乙酰胺基团中氮原子可能的手性。分子体系有两个手性中心。因此,现在有四种可能的构型:RR、RS、SR和SS。为了更好地理解系统,我们得到了PBE0/6-311++G(3df,2p)理论能级的电子能谱。从核糖体的结晶学数据得到了含s -利奈唑胺分子体系的络合形式。电子性质的计算结果与实验晶体学数据和已有的理论结果吻合较好。
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来源期刊
Chirality
Chirality 医学-分析化学
CiteScore
4.40
自引率
5.00%
发文量
124
审稿时长
1 months
期刊介绍: The main aim of the journal is to publish original contributions of scientific work on the role of chirality in chemistry and biochemistry in respect to biological, chemical, materials, pharmacological, spectroscopic and physical properties. Papers on the chemistry (physiochemical, preparative synthetic, and analytical), physics, pharmacology, clinical pharmacology, toxicology, and other biological aspects of chiral molecules will be published.
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