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首页> 外文期刊>Polish Journal of Environmental Studies >Expression of Superoxide Dismutase Isoforms in Desmodesmus subspicatus Cells Exposed to Anthropogenic Contaminants
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Expression of Superoxide Dismutase Isoforms in Desmodesmus subspicatus Cells Exposed to Anthropogenic Contaminants

机译:超氧化物歧化酶同工型在暴露于人为污染的Desmodesmus subspicatus细胞中的表达

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摘要

Expression of superoxide dismutase (SOD) isoforms was assessed as a biochemical marker, allowing to estimate the toxicity of chemicals toward a population of microalga Desmodesmus subspicatus (Chlorophyta). The effect of low (EC_(10)) and elevated (EC_(50)) doses of cadmium chloride (Cd), anthracene (ANT), and chlori-dazon (CHd) on SOD activity and isoform profile, as well as the amount of biosynthesized protein of ascribed to chloroplast (Fe-SOD) and cytosol (Cu/Zn-SOD) superoxide dismutase, were analyzed. Activities of Mn-SOD, Cu/Zn-SOD, and two Fe-SOD isoforms were determined densitometrically by native polyacrylamide gel electrophoresis and specific staining for SOD activity. Fe-SOD and Cu/Zn-SOD protein amount was analyzed by the semi-quantitative blot technique. The toxicants tested had no effect on the activity of Fe-SOD 1 isoform, whereas Fe-SOD 2 activity increased significantly. Simultaneously, the amount of Fe-SOD 1 protein increased after low contaminant doses treatment, whereas the amount of Fe-SOD 2 increased in cells exposed to elevated Cd, ANT, and CHd concentrations. A significant increase in Cu/Zn-SOD protein amount was observed in cells treated with EC_(50) doses of ANT and Cd, as well as CHd in concentrations corresponding to the EC10 value. At the same time, the activity of Cu/Zn-SOD increased in D. subspicatus cells exposed to an elevated dose of CHd. We have found that in the cells of D. subspicatus, the induction of Fe-SOD 1 and Cu/Zn-SOD Csd2 biosynthesis responds to xenobiotic-mediated stress level. The increase in the amount of chloroplastic Fe-SOD 1 and Cu/Zn-SOD Csd2 isoforms may be a sensitive biochemical marker of stress conditions, revealing the effects of low doses of aquatic contaminants on green algae.%Department of Plant Physiology, Faculty of Biology, University of Gdansk, Pilsudskiego 46, 81-378 Gdynia, Poland ;Department of Biochemistry, Medical University of Gdansk, Debinki 1, 80-211 Gdansk, Poland;Department of Plant Physiology, Faculty of Biology, University of Gdansk, Pilsudskiego 46, 81-378 Gdynia, Poland;
机译:评估超氧化物歧化酶(SOD)同工型的表达作为生化标记,可以评估化学物质对微藻Desmodesmus subspicatus(Chlorophyta)种群的毒性。低剂量(EC_(10))和高剂量(EC_(50))的氯化镉(Cd),蒽(ANT)和氯哒嗪(CHd)对SOD活性和亚型的影响以及数量对叶绿体(Fe-SOD)和胞质溶胶(Cu / Zn-SOD)超氧化物歧化酶的生物合成蛋白进行了分析。 Mn-SOD,Cu / Zn-SOD和两种Fe-SOD亚型的活性通过天然聚丙烯酰胺凝胶电泳和SOD活性的特异性染色进行光密度测定。通过半定量印迹技术分析了Fe-SOD和Cu / Zn-SOD蛋白的量。测试的毒物对Fe-SOD 1同工型的活性没有影响,而Fe-SOD 2活性显着增加。同时,在低污染物剂量处理后,Fe-SOD 1蛋白的量增加,而暴露于高Cd,ANT和CHd浓度的细胞中Fe-SOD 2的量增加。在用EC_(50)剂量的ANT和Cd以及浓度与EC10值对应的CHd处理的细胞中,观察到Cu / Zn-SOD蛋白含量显着增加。同时,暴露于高剂量CHd的D. subspicatus细胞中Cu / Zn-SOD的活性增加。我们已经发现在D.subspicatus的细胞中,Fe-SOD 1和Cu / Zn-SOD Csd2生物合成的诱导对异源生物介导的应激水平作出反应。叶绿体中Fe-SOD 1和Cu / Zn-SOD Csd2同工型的数量增加可能是胁迫条件的敏感生化标志,揭示了低剂量水生污染物对绿藻的影响。%植物生理学系格但斯克大学生物学系,Pilsudskiego 46,81-378格丁尼亚,波兰;格但斯克医科大学生物化学系,Debinki 1,80-211波兰格但斯克;格但斯克大学生物系,植物生理学系,Pilsudskiego 46 ,波兰格丁尼亚81-378;

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