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含[1,2,4]三唑并[1,5-a]嘧啶和[1,2,3,4]四唑并[1,5-a]嘧啶部分的多杂环化合物的新合成及其作为预期抗癌试剂的 DFT 研究。

A New Synthesis of Poly Heterocyclic Compounds Containing [1,2,4]triazolo and [1,2,3,4]tetrazolo Moieties and their DFT Study as Expected Anti-cancer Reagents.

机构信息

Chemistry Department, Faculty of Science, Damanhour University, Damanhour, Egypt.

Chemistry Department, Faculty of Science, Alexandria University, Alexandria, Egypt.

出版信息

Curr Org Synth. 2020;17(3):211-223. doi: 10.2174/1570179417666200226092516.

Abstract

BACKGROUND

2-amino-3-cyanopyridines are good starting reagents that have been used in synthesis of many heterocyclic compounds such as pyridopyrimidines, [1,2,4]triazolo and [1,2,3,4] tetrazolo derivatives which have biological activities as anti-microbial and cytotoxic activities. Meanwhile [1,2,4]triazolo and [1,2,3,4]tetrazolo derivatives are well known to possess many physiological activities, such as anticancer , antifungal, muscle relaxant, hypnotic, anti-inflammatory, diuretic and antihypertensive activities. A broad class of heterocyclic compounds has been studied to demonstrate their biological activity on the structures of DNA and RNA. Several of important functions make Tankyrases acts as targets in potential drug.

OBJECTIVE

The article focuses on synthesis of [1,2,4]triazolo and [1,2,3,4]tetrazolo derivatives and their theoretical calculations that suggest they are anti-cancer substances.

MATERIALS AND METHODS

DFT and computational studies were performed on the structural properties of experimental molecules experimentally, and significant theoretical calculations were performed based on density functional theory (DFT) with Becke's three-parameter exchange function21-22 of correlation functional Lee Yang Parr (B3LYP) with the basis set 6-31G (d,p) using Gaussian 03 software23. Geometrical parameters of the optimized structures were calculated and also the charge on each atom (Mulliken charge). Chemcraft program24 was used to visualize the optimized structure and ChemBio3D ultra 12.0 was used to visualize the highest occupied and lowest unoccupied molecular orbitals.

RESULTS

Preliminary screening in five studied ligands acts as inhibitors for different active sites along the target. The molecular docking study also revealed that the compound 6c was the most effective compounds in inhibiting Tankyrase I enzyme (2rf5), this result can help strongly in inhibition of carcinogenic cells and cancer treatment.

CONCLUSION

We have described a new practical cyclocondensation synthesis for a series of [1,2,4]triazolo[4,3- c]pyrido[3,2-e] pyrimidine and pyrido[2',3':4,5] pyrimido[6,1-c][1,2,4] triazine from 2-amino-3-cyano-4.6- diarylpyridines. Also polyheterocyclic compounds containing [1,2,4]triazolo and [1,2,3,4]tetrazolo moieties were also synthesized through the reactions of 3-hydrazino-8,10-diaryl [1,2,4]triazolo[4,3-c]pyrido[3,2- e]pyrimidine with both formic acid and the formation of diazonuim salt respectively. Newly synthesized heterocycles structures were confirmed using elemental analysis, IR, 1H-NMR, 13C-NMR and mass spectral data. DFT and computational studies were carried out on five of the synthesized poly heterocyclic compounds to show their structural and geometrical parameters involved in the study. Molecular docking using Tankyrase I enzyme as a target showed how the studied heterocyclic compounds act as a ligand interacting most of active sites on Tankyrase I with a type of interactions specified for H-bonding and VDW. We investigated that the five studied ligands act as inhibitors for different active sites along the target. The molecular docking study also revealed that the compound 6c was the most effective compounds in inhibiting Tankyrase I enzyme (2rf5), this result can help strongly in inhibition of carcinogenic cells and cancer treatment.

摘要

背景

2-氨基-3-氰基吡啶是一种很好的起始试剂,已被用于合成许多杂环化合物,如吡啶并嘧啶、[1,2,4]三唑和[1,2,3,4]四唑衍生物,它们具有抗菌和细胞毒性等生物活性。同时,[1,2,4]三唑和[1,2,3,4]四唑衍生物具有许多生理活性,如抗癌、抗真菌、肌肉松弛、催眠、抗炎、利尿和降压作用。已经研究了广泛的杂环化合物,以证明它们在 DNA 和 RNA 结构上的生物活性。一些重要的功能使 Tankyrases 成为潜在药物的靶点。

目的

本文重点研究了[1,2,4]三唑和[1,2,3,4]四唑衍生物的合成及其理论计算,表明它们是抗癌物质。

材料和方法

采用密度泛函理论(DFT)和计算研究对实验分子的结构性质进行了理论计算,基于密度泛函理论(DFT),采用 Becke 的三参数交换函数 21-22 相关函数 Lee Yang Parr(B3LYP),基组为 6-31G(d,p),使用 Gaussian 03 软件 23。计算了优化结构的几何参数,并计算了每个原子的电荷(Mulliken 电荷)。使用 Chemcraft 程序 24 可视化优化结构,使用 ChemBio3D ultra 12.0 可视化最高占据和最低未占据分子轨道。

结果

初步筛选表明,五种研究配体可作为靶标不同活性部位的抑制剂。分子对接研究还表明,化合物 6c 是抑制 Tankyrase I 酶(2rf5)最有效的化合物之一,这一结果有助于抑制致癌细胞和癌症治疗。

结论

我们描述了一种新的实用的环缩合合成方法,用于合成一系列 2-氨基-3-氰基-4,6-二芳基吡啶并[3,2-e]嘧啶和吡啶并[2',3':4,5]嘧啶并[6,1-c][1,2,4]三嗪。此外,还通过 3-肼基-8,10-二芳基[1,2,4]三唑并[4,3-c]吡啶并[3,2-e]嘧啶与甲酸和重氮盐的形成反应,合成了含有[1,2,4]三唑和[1,2,3,4]四唑片段的多杂环化合物。新合成的杂环结构通过元素分析、IR、1H-NMR、13C-NMR 和质谱数据得到证实。对五种合成的杂环化合物进行了密度泛函理论(DFT)和计算研究,以显示其结构和几何参数。利用 Tankyrase I 酶作为靶标进行分子对接研究表明,研究的杂环化合物如何作为配体与 Tankyrase I 上的大多数活性部位相互作用,并具有特定的氢键和 VDW 相互作用类型。我们研究了五种研究配体作为靶标不同活性部位的抑制剂。分子对接研究还表明,化合物 6c 是抑制 Tankyrase I 酶(2rf5)最有效的化合物之一,这一结果有助于抑制致癌细胞和癌症治疗。

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