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吲哚并[3,2-c]异喹啉衍生的三唑类化合物作为潜在抗菌和 DNA 断裂剂的研究:合成、DFT 计算和分子模拟研究。

Exploration of Indolo[3,2c]isoquinoline derived triazoles as potential antimicrobial and DNA cleavage agents: Synthesis, DFT calculations, and molecular modeling studies.

机构信息

P. G. Department of Chemistry, Vijaya College, R.V. Road, Bengaluru 560 004, Karnataka, India.

Department of Chemistry, MSI Degree College, Kalaburagi 585101, Karnataka, India.

出版信息

Bioorg Chem. 2023 Aug;137:106598. doi: 10.1016/j.bioorg.2023.106598. Epub 2023 May 9.

Abstract

Indole and its derivatives are well-known assorted motif in drug design and development. We here in reporting synthesis of new 9-chloro-1-(4-substituted phenyl)-12H-indolo[2,3-c][1,2,4]triazolo[3,4-a]isoquinolines 7 (a-h). Structures of the newly synthesized compounds were confirmed by making use of spectroscopic techniques like IR, NMR and Mass. The DFT calculations were taken for the selected molecules using CAM-B3LYP hybrid functional with a 6-31 + g(d) all-electron basis set using the Gaussian 09 package. The drug-likeness predictions were described for the synthesized derivatives. The In vitro antimicrobial and DNA cleavage activities were reported for all compounds 7 (a-h). The compounds 7a, 7b, and 7h showed excellent microbial inhibition and DNA cleavage activity as compared to standard drugs. Furthermore, the docking studies for the newly synthesized molecules were carried out by Auto dock software with two molecular targets Epidermal Growth Factor Receptor tyrosine kinase (1 M17) and C-kit Tyrosine Kinase (1 T46) exhibited better binding affinity of all synthesized compounds. In addition, the docking results were observed to be in full agreement with the in vitro DNA cleavage assay suggesting the potential of synthesized metal complexes in biological applications. Lastly, the protein stability, fluctuations of APO-Protein, and protein-ligand complexes were investigated through Molecular Dynamics (MD) simulations studies using Desmond Maestro 11.3 and potential lead molecules were identified.

摘要

吲哚及其衍生物是药物设计和开发中众所周知的杂环基序。我们在这里报道了新的 9-氯-1-(4-取代苯基)-12H-吲哚并[2,3-c][1,2,4]三唑并[3,4-a]异喹啉 7(a-h)的合成。利用红外、核磁和质谱等光谱技术证实了新合成化合物的结构。采用 CAM-B3LYP 杂化泛函和全电子 6-31+g(d)基组,在 Gaussian 09 包中对选定分子进行了 DFT 计算。对合成衍生物进行了药物相似性预测。报道了所有化合物 7(a-h)的体外抗菌和 DNA 切割活性。与标准药物相比,化合物 7a、7b 和 7h 表现出优异的微生物抑制和 DNA 切割活性。此外,还通过 Auto dock 软件对新合成分子进行了对接研究,两个分子靶点表皮生长因子受体酪氨酸激酶(1M17)和 C-kit 酪氨酸激酶(1T46)表现出所有合成化合物更好的结合亲和力。此外,对接结果与体外 DNA 切割试验完全一致,表明合成金属配合物在生物应用中的潜力。最后,通过 Desmond Maestro 11.3 进行分子动力学(MD)模拟研究,研究了蛋白质的稳定性、APO-蛋白的波动和蛋白-配体复合物,并确定了潜在的先导分子。

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