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Effects of Nickel, Chlorpyrifos and Their Mixture on the Dictyostelium discoideum Proteome

机译:镍,毒死rif及其混合物对盘基网柄菌蛋白质组的影响

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Mixtures of chemicals can have additive, synergistic or antagonistic interactions. We investigated the effects of the exposure to nickel, the organophosphate insecticide chlorpyrifos at effect concentrations (EC) of 25% and 50% and their binary mixture (Ec25 + EC25) on Dictyostelium discoideum amoebae based on lysosomal membrane stability (LMS). We treated D. discoideum with these compounds under controlled laboratory conditions and evaluated the changes in protein levels using a two-dimensional gel electrophoresis (2DE) proteomic approach. Nickel treatment at EC25 induced changes in 14 protein spots, 12 of which were down-regulated. Treatment with nickel at EC50 resulted in changes in 15 spots, 10 of which were down-regulated. Treatment with chlorpyrifos at EC25 induced changes in six spots, all of which were down-regulated; treatment with chlorpyrifos at EC50 induced changes in 13 spots, five of which were down-regulated. The mixture corresponding to EC25 of each compound induced changes in 19 spots, 13 of which were down-regulated. The data together reveal that a different protein expression signature exists for each treatment, and that only a few proteins are modulated in multiple different treatments. For a simple binary mixture, the proteomic response does not allow for the identification of each toxicant. The protein spots that showed significant differences were identified by mass spectrometry, which revealed modulations of proteins involved in metal detoxification, stress adaptation, the oxidative stress response and other cellular processes.
机译:化学品混合物可以具有加成,协同或拮抗作用。我们基于溶酶体膜稳定性(LMS)研究了镍,效果浓度(EC)为25%和50%的有机磷酸盐杀虫剂毒死and及其二元混合物(Ec25 + EC25)对变形双歧杆菌的影响。我们在受控的实验室条件下用这些化合物处理了D. discoideum,并使用二维凝胶电泳(2DE)蛋白质组学方法评估了蛋白质水平的变化。在EC25处进行镍处理可诱导14个蛋白点的变化,其中12个蛋白点被下调。在EC50处用镍处理导致15个斑点的变化,其中10个被下调。在EC25处用毒死rif处理可引起六个点的变化,所有这些点均被下调。毒死rif在EC50浓度下的处理导致13个斑点的变化,其中五个被下调。每种化合物对应于EC25的混合物在19个斑点中引起变化,其中13个被下调。数据一起显示每种处理存在不同的蛋白质表达特征,并且在多种不同的处理中只有少数蛋白质被调节。对于简单的二元混合物,蛋白质组学响应无法识别每种有毒物质。通过质谱鉴定出显示出显着差异的蛋白质斑点,该蛋白质斑点揭示了与金属解毒,应激适应,氧化应激反应和其他细胞过程有关的蛋白质调节。

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