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Synthesis biological activity and molecular modelling studies of shikimic acid derivatives as inhibitors of the shikimate dehydrogenase enzyme of Escherichia coli

机译:iki草酸衍生物作为大肠杆菌the草酸脱氢酶抑制剂的合成生物学活性和分子模型研究

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摘要

Shikimic acid (SA) pathway is the common route used by bacteria, plants, fungi, algae, and certain Apicomplexa parasites for the biosynthesis of aromatic amino acids and other secondary metabolites. As this essential pathway is absent in mammals designing inhibitors against implied enzymes may lead to the development of antimicrobial and herbicidal agents harmless to humans. Shikimate dehydrogenase (SDH) is the fourth enzyme of the SA pathway. In this contribution, a series of SA amide derivatives were synthesised and evaluated for in vitro SDH inhibition and antibacterial activity against Escherichia coli. All tested compounds showed to be mixed type inhibitors; diamide derivatives displayed more inhibitory activity than synthesised monoamides. Among the evaluated compounds, molecules called >4a and >4b were the most active derivatives with IC50 588 and 589 µM, respectively. Molecular modelling studies suggested two different binding modes of monoamide and diamide derivatives to the SDH enzyme of E. coli.
机译:ki草酸(SA)途径是细菌,植物,真菌,藻类和某些蚜虫寄生虫用于生物合成芳香族氨基酸和其他次要代谢物的常用途径。由于在哺乳动物中不存在这种必不可少的途径,因此设计针对隐含酶的抑制剂可能会导致开发对人类无害的抗菌剂和除草剂。 Shikimate脱氢酶(SDH)是SA途径的第四种酶。在此贡献中,合成了一系列SA酰胺衍生物,并评估了其对SDH的体外抑制作用和对大肠杆菌的抗菌活性。所有测试的化合物均显示为混合型抑制剂。二酰胺衍生物比合成的单酰胺具有更大的抑制活性。在评估的化合物中,名为> 4a 和> 4b 的分子是活性最高的衍生物,分别具有IC50 588和589 µM。分子建模研究表明单酰胺和二酰胺衍生物与大肠杆菌SDH酶有两种不同的结合模式。

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