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一种开发含噻二唑新型抗真菌剂的综合方法:合成以及相似性搜索、同源建模、分子动力学和分子对接联合研究

An integrated approach towards the development of novel antifungal agents containing thiadiazole: synthesis and a combined similarity search, homology modelling, molecular dynamics and molecular docking study.

作者信息

Er Mustafa, Abounakhla Abdulati Miftah, Tahtaci Hakan, Bawah Ali Hasin, Çınaroğlu Süleyman Selim, Onaran Abdurrahman, Ece Abdulilah

机构信息

Department of Chemistry, Faculty of Science, Karabuk University, 78050, Karabuk, Turkey.

Department of Medical Biotechnology, Institute of Health Sciences, Acıbadem Mehmet Ali Aydınlar University, 34752, İstanbul, Turkey.

出版信息

Chem Cent J. 2018 Nov 23;12(1):121. doi: 10.1186/s13065-018-0485-3.

Abstract

BACKGROUND

This study aims to synthesise and characterise novel compounds containing 2-amino-1,3,4-thiadiazole and their acyl derivatives and to investigate antifungal activities. Similarity search, molecular dynamics and molecular docking were also studied to find out a potential target and enlighten the inhibition mechanism.

RESULTS

As a first step, 2-amino-1,3,4-thiadiazole derivatives (compounds 3 and 4) were synthesised with high yields (81 and 84%). The target compounds (6a-n and 7a-n) were then synthesised with moderate to high yields (56-87%) by reacting 3 and 4 with various acyl chloride derivatives (5a-n). The synthesized compounds were characterized using the IR, H-NMR, C-NMR, Mass, X-ray (compound 7n) and elemental analysis techniques. Later, the in vitro antifungal activities of the synthesised compounds were determined. The inhibition zones exhibited by the compounds against the tested fungi, their minimum fungicidal activities, minimum inhibitory concentration and the lethal dose values (LD) were determined. The compounds exhibited moderate to high levels of activity against all tested pathogens. Finally, in silico modelling was used to enlighten inhibition mechanism using ligand and structure-based methods. As an initial step, similarity search was carried out and the resulting proteins that belong to Homo sapiens were used as reference in sequence similarity search to find the corresponding amino acid sequences in target organisms. Homology modelling was used to construct the protein structure. The stabilised protein structure obtained from molecular dynamics simulation was used in molecular docking.

CONCLUSION

The overall results presented here might be a good starting point for the identification of novel and more active compounds as antifungal agents.

摘要

背景

本研究旨在合成并表征含2-氨基-1,3,4-噻二唑的新型化合物及其酰基衍生物,并研究其抗真菌活性。还进行了相似性搜索、分子动力学和分子对接研究,以找出潜在靶点并阐明抑制机制。

结果

第一步,以高产率(81%和84%)合成了2-氨基-1,3,4-噻二唑衍生物(化合物3和4)。然后通过使3和4与各种酰氯衍生物(5a-n)反应,以中等到高产率(56-87%)合成了目标化合物(6a-n和7a-n)。使用红外光谱、氢核磁共振、碳核磁共振、质谱、X射线(化合物7n)和元素分析技术对合成的化合物进行了表征。随后,测定了合成化合物的体外抗真菌活性。测定了化合物对受试真菌的抑菌圈、最小杀菌活性、最小抑菌浓度和致死剂量值(LD)。这些化合物对所有受试病原体均表现出中等到高水平的活性。最后,采用基于配体和结构的方法进行计算机模拟以阐明抑制机制。作为第一步,进行了相似性搜索,并将属于智人的所得蛋白质用作序列相似性搜索中的参考,以在目标生物体中找到相应的氨基酸序列。使用同源建模构建蛋白质结构。将分子动力学模拟获得的稳定蛋白质结构用于分子对接。

结论

本文给出的总体结果可能是鉴定新型、更具活性的抗真菌剂化合物的良好起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d76d/6768040/0df687e6843e/13065_2018_485_Sch1_HTML.jpg

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