Department of Biotechnology, B. K. Birla College, Kalyan, Maharashtra, 421304, India.
Department of Physics, Dr. MGR Educational and Research Institute, Chennai, Tamil Nadu, 600095, India.
J Biol Phys. 2020 Dec;46(4):395-414. doi: 10.1007/s10867-020-09560-7. Epub 2020 Nov 25.
Copper and zinc have a high binding affinity with a Staphylococcus aureus bacterial community. This causes a change in the biomolecular composition of S. aureus. Our study aims at understanding the resistance mechanism of Cu and Zn either or in various combinations using FTIR and chemometric techniques. Zn toxicity resulted in a significant change in lipid content (3100-2800 cm) compared to Cu. A significant decrease in protein content is observed for Cu treatment in the amide region. The bio-concentration factor shows a higher value for Cu compared to Zn. The increase in band area of carbohydrates moieties 1059 cm shows the secretion of EPS due to Cu toxicity. A significant change in nucleic acid compositions was noted in the region1200-900 cm due to Zn treatment. Secondary structural change in protein shows β sheet formation. The result of the finding shows Cu has greater toxicity than Zn. Further toxicity effects were greatly enhanced for metal mixtures ratio (Cu:2Zn). This shows Zn exhibits synergism effect with Cu. The obtained ROC (receiver operating characteristic) curve area gives good reliability of the experiments. The study attempts to understand the mechanism of toxicity removal of Cu and Zn metal mixtures by bacterial population using FTIR coupled with chemometric techniques. Graphical abstract.
铜和锌与金黄色葡萄球菌菌群具有很高的结合亲和力。这会导致金黄色葡萄球菌的生物分子组成发生变化。我们的研究旨在使用傅里叶变换红外光谱(FTIR)和化学计量学技术了解 Cu 和 Zn 单独或组合使用时的耐药机制。与 Cu 相比,Zn 毒性导致脂质含量(3100-2800 cm)发生显著变化。Cu 处理导致酰胺区域的蛋白质含量明显下降。生物浓缩因子显示 Cu 的值高于 Zn。由于 Cu 毒性,碳水化合物部分 1059 cm 的带面积增加表明 EPS 的分泌。由于 Zn 处理,在 1200-900 cm 区域注意到核酸组成发生显著变化。蛋白质的二级结构变化表明β片层形成。研究结果表明,Cu 的毒性大于 Zn。金属混合物比例(Cu:2Zn)的进一步毒性作用大大增强。这表明 Zn 与 Cu 表现出协同作用。ROC(接收器操作特征)曲线面积的获得为实验提供了良好的可靠性。该研究试图使用 FTIR 结合化学计量学技术,了解细菌种群对 Cu 和 Zn 金属混合物的毒性去除机制。