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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >A palladium(II) complex with the Schiff base 4-chloro-2-(N-ethyliminomethyl)-phenol: Synthesis, structural characterization, and in vitro and in silico biological activity studies
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A palladium(II) complex with the Schiff base 4-chloro-2-(N-ethyliminomethyl)-phenol: Synthesis, structural characterization, and in vitro and in silico biological activity studies

机译:钯(II)络合物与席夫碱4-氯-2-(N-乙基氨基甲基) - 酚:合成,结构表征和体外和硅生物活性研究

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摘要

The synthesis and characterization of the Pd(II) complex of the formula [Pd(L)(2)] 1 with the Schiff base 4-chloro-2-(N-ethyliminomethyl)-phenol (HL) as derived in situ via the condensation reaction of 5-chloro-salicylaldehyde and ethylamine was undertaken. The structure of 1 was verified by single-crystal X-ray crystallography. The ability of 1 to interact with calf-thymus (CT) DNA was studied by UV-vis and viscosity experiments, and its ability to displace ethidium bromide (EB) from the DNA-EB conjugate was revealed by fluorescence spectroscopy. It was found that intercalation is the most possible mode of interaction with CT DNA. Additionally, DNA electrophoretic mobility experiments showed that 1 interacts with the plasmid pBluescript SK(+) (pDNA) as proved by the formation of unusual mobility DNA bands and degradation of relaxed pDNA at concentration of 5 mM. The interaction of 1 with human (HSA) and bovine serum albumin (BSA) was monitored revealing its reversible binding to albumins. The complex showed noteworthy antimicrobial activity against one (Bacillus subtilis) of the five tested bacteria. In order to explain the described in vitro activity of the compound, we adopted molecular docking studies on the crystal structure of HSA, BSA, CT DNA and DNA-gyrase. Furthermore, in silica predictive tools have been employed to study the properties of the complex. The in silico studies are adopted on a multitude of proteins involved in cancer growth, as well as prediction of drug-induced changes of gene expression profile, protein- and mRNA-based prediction results, prediction of sites of metabolism, cytotoxicity for cancer cell lines, etc.
机译:用Schiff碱4-氯-2-(N-乙基氨基甲基)-phenol(HL)通过筛选(N-乙基咪乙基) - 酚(HL)的磷酸锌(II)络合物的合成与表征。进行5-氯 - 水杨醛和乙胺的缩合反应。通过单晶X射线晶体学验证了1的结构。通过UV-VIS和粘度实验研究了1与CALF-rEMUS(CT)DNA相互作用的能力,并通过荧光光谱揭示了从DNA-EB缀合物移位溴化乙酰胺(EB)的能力。发现嵌入是与CT DNA相互作用的最佳相互作用模式。另外,DNA电泳迁移率实验表明,通过形成不寻常的迁移率DNA带和浓度为5mm的浓度的疏松的PDNA的降解而通过形成具有质粒pbluescript sk(+)(pDNA)的质粒pbluescript sh(+)(pDNA)相互作用。监测1与人(HSA)和牛血清白蛋白(BSA)的相互作用揭示其与蛋白质的可逆结合。该综合体显示出对五种测试细菌的一种(枯草芽孢杆菌)的有效抗菌活性。为了解释该化合物的体外活性,我们采用了HSA,BSA,CT DNA和DNA-乙基酶的晶体结构的分子对接研究。此外,已经采用二氧化硅预测工具来研究复合物的性质。在三种蛋白质中采用了癌症生长的众多蛋白质,以及预测药物诱导的基因表达谱,蛋白质和mRNA的预测结果,代谢位点,癌细胞系的细胞毒性预测, 等等。

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