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设计、合成、计算机辅助和 POM 研究鉴定苄叉衍生物的药效团部位。

Design, Synthesis, In Silico and POM Studies for the Identification of the Pharmacophore Sites of Benzylidene Derivatives.

机构信息

Laboratory of Carbohydrate and Nucleoside Chemistry (LCNC), Department of Chemistry, Faculty of Science, University of Chittagong, Chittagong 4331, Bangladesh.

Department of Chemistry, Faculty of Science, Jazan University, Jazan 45142, Saudi Arabia.

出版信息

Molecules. 2023 Mar 13;28(6):2613. doi: 10.3390/molecules28062613.

Abstract

Due to the uneven distribution of glycosidase enzyme expression across bacteria and fungi, glycoside derivatives of antimicrobial compounds provide prospective and promising antimicrobial materials. Therefore, herein, we report the synthesis and characterization of six novel methyl 4,6--benzylidene-α-d-glucopyranoside (MBG) derivatives (-). The structures were ascertained using spectroscopic techniques and elemental analyses. Antimicrobial tests (zone of inhibition, MIC and MBC) were carried out to determine their ability to inhibit the growth of different Gram-positive, Gram-negative bacteria and fungi. The highest antibacterial activity was recorded with compounds , , and . The compounds with the most significant antifungal efficacy were , , and . Based on the prediction of activity spectra for substances (PASS), compounds and have promising antimicrobial capacity. Molecular docking studies focused on fungal and bacterial proteins where derivatives and exhibited strong binding affinities. The molecular dynamics study revealed that the complexes formed by these derivatives with the proteins L,D-transpeptidase Ykud and endoglucanase from remained stable, both over time and in physiological conditions. Structure-activity relationships, including in vitro and in silico results, revealed that the acyl chains [lauroyl-(CH(CH)CO-), cinnamoyl-(CHCH=CHCO-)], in combination with sugar, were found to have the most potential against human and fungal pathogens. Synthetic, antimicrobial and pharmacokinetic studies revealed that MBG derivatives have good potential for antimicrobial activity, developing a therapeutic target for bacteria and fungi. Furthermore, the Petra/Osiris/Molinspiration (POM) study clearly indicated the presence of an important (O1----O2) antifungal pharmacophore site. This site can also be explored as a potential antiviral moiety.

摘要

由于糖苷酶在细菌和真菌中的表达分布不均,因此抗菌化合物的糖苷衍生物提供了有前景和有希望的抗菌材料。因此,本文报告了六种新型甲基 4,6--亚苄基-α-d-吡喃葡萄糖苷(MBG)衍生物(-)的合成与表征。结构通过光谱技术和元素分析确定。进行了抗菌测试(抑菌圈、MIC 和 MBC)以确定它们抑制不同革兰氏阳性、革兰氏阴性细菌和真菌生长的能力。化合物 、 、 和 表现出最高的抗菌活性。具有最强抗真菌功效的化合物为 、 、 和 。根据活性光谱预测(PASS),化合物 和 具有有希望的抗菌能力。分子对接研究集中在真菌和细菌蛋白上,其中衍生物 和 表现出很强的结合亲和力。分子动力学研究表明,这些衍生物与蛋白质 L,D-转肽酶 Ykud 和内切葡聚糖酶的复合物在时间和生理条件下均保持稳定。构效关系,包括体外和计算结果,表明酰基链[lauroyl-(CH(CH)CO-),cinnamoyl-(CHCH=CHCO-)]与糖结合被发现对人类和真菌病原体最有潜力。合成、抗菌和药代动力学研究表明,MBG 衍生物具有良好的抗菌活性潜力,为细菌和真菌开发了治疗靶点。此外,Petra/Osiris/Molinspiration(POM)研究清楚地表明存在重要的(O1----O2)抗真菌药效团部位。该部位也可以作为潜在的抗病毒部分进行探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cae7/10053039/83665cd3e6c9/molecules-28-02613-sch001.jpg

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