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含2-氨基噻唑-三唑双杂环的高效酪氨酸酶抑制性-芳基化-4-基-苯甲酰胺的设计:通过酶抑制、动力学和计算研究的机理洞察

Design of potent tyrosinase inhibiting -arylated-4-yl-benzamides bearing 2-aminothiazole-triazole bi-heterocycles: mechanistic insight through enzyme inhibition, kinetics and computational studies.

作者信息

Khan Farhan Mahmood, Abbasi Muhammad Athar, Rehman Aziz-Ur, Siddiqui Sabahat Zahra, Sadiq Butt Abdul Rehman, Raza Hussain, Hassan Mubashir, Ali Shah Syed Adnan, Shahid Muhammad, Kim Song Ja

机构信息

Department of Chemistry, Government College University Lahore 54000 Pakistan

Department of Biological Sciences, College of Natural Sciences, Kongju National University Gongju 32588 South Korea.

出版信息

RSC Adv. 2024 May 21;14(23):16546-16559. doi: 10.1039/d4ra01063a. eCollection 2024 May 15.

Abstract

By using a convergent methodology, a unique series of -arylated 4-yl-benzamides containing a bi-heterocyclic thiazole-triazole core was synthesized and the structures of these hybrid molecules, 9a-k, were corroborated through spectral analyses. The studies of these multi-functional molecules demonstrated their potent mushroom tyrosinase inhibition relative to the standard used. The kinetics mechanism was exposed by lineweaver-burk plots which revealed that, 9c, inhibited mushroom tyrosinase non-competitively by forming an enzyme-inhibitor complex. The inhibition constant calculated from Dixon plots for this compound was 0.016 μM. The computational study was also consistent with the experimental results and these molecules disclosed good results of all scoring functions and interactions, which suggested a good binding to mushroom tyrosinase. So, it was predicted from the inferred results that these molecules might be considered as promising medicinal scaffolds for the diseases associated with the over-expression of this enzyme.

摘要

通过采用收敛法,合成了一系列独特的含双杂环噻唑 - 三唑核心的芳基化4 - 基 - 苯甲酰胺,并通过光谱分析证实了这些杂化分子(9a - k)的结构。对这些多功能分子的研究表明,相对于所用标准物,它们具有强大的蘑菇酪氨酸酶抑制活性。通过Lineweaver - Burk图揭示了动力学机制,结果表明9c通过形成酶 - 抑制剂复合物非竞争性地抑制蘑菇酪氨酸酶。根据Dixon图计算该化合物的抑制常数为0.016 μM。计算研究也与实验结果一致,这些分子在所有评分函数和相互作用方面都显示出良好的结果,这表明它们与蘑菇酪氨酸酶具有良好的结合。因此,根据推断结果预测,这些分子可能被视为与该酶过度表达相关疾病的有前景的药用支架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b90a/11106707/e0e7fa12a23d/d4ra01063a-f1.jpg

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