首页> 外文期刊>Acta biochimica Polonica >Comparative study of metal induced phospholipid modifications in the heavy metal tolerant filamentous fungus Paecilomyces marquandii and implications for the fungal membrane integrity
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Comparative study of metal induced phospholipid modifications in the heavy metal tolerant filamentous fungus Paecilomyces marquandii and implications for the fungal membrane integrity

机译:金属诱导的重金属耐受丝状真菌马氏拟青霉中磷脂修饰的比较及其对真菌膜完整性的影响

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In this work we compared the effect of five heavy metals: Zn, Pb, Cd, Ni and Cu on phospholipid composition of the ubiquitous soil fungus Paecilomyces marquandii, originating from a strongly metal polluted area and characterized by high tolerance to these elements. Cd, Ni and Cu caused an increase in phosphatidylcholine (PC). Only Pb decreased PC content, which was accompanied by a significant rise in the phosphatidic acids (PA) level, probably due to activation of phospholipase D which hydrolyzes PC to PA. This could result in membrane fluidity disturbance, and thus affect its integrity. The assessment of propidium iodide influx showed strong disturbance of membrane integrity for Cu and Pb stressed mycelia, whereas mycelia treated with Ni were impermeable to this dye. The results obtained revealed a strong Cu and Pb toxicity involving disruption of membrane integrity. Pb action was reflected by lipid composition, whereas changes in Cu treated mycelia did not completely elucidate its harmful effect on the membrane, which was most probably caused by Cu induced lipid peroxidation. Zn did not induce quantitative changes in PC and phosphatidylethanolamine (PE) but caused changes in phospholipid lipid saturation, which appears to be important for fungus adaptation to the presence of metals. The enhanced PC content balanced by higher PC saturation can help in the maintenance of proper membrane fluidity and result in alleviating the Cd and Ni induced stress. These results will allow to clarify the mechanism of Pb toxicity and help to elucidate the cellular basis of fungal membrane adaptation to heavy metals.
机译:在这项工作中,我们比较了五种重金属:Zn,Pb,Cd,Ni和Cu对无处不在的土壤真菌Mare拟青霉的磷脂组成的影响,该细菌起源于金属污染严重的地区,并且对这些元素具有高度耐受性。 Cd,Ni和Cu引起磷脂酰胆碱(PC)的增加。只有Pb降低了PC含量,并伴随着磷脂酸(PA)含量的显着增加,这可能是由于将PC水解为PA的磷脂酶D活化所致。这可能会导致膜流动性干扰,从而影响其完整性。碘化丙啶流入的评估表明,Cu和Pb胁迫菌丝体的膜完整性受到严重干扰,而用Ni处理的菌丝体对此染料不渗透。获得的结果表明,强烈的Cu和Pb毒性涉及膜完整性的破坏。铅的作用由脂质组成反映出来,而铜处理过的菌丝体的变化并未完全阐明其对膜的有害作用,这很可能是由铜诱导的脂质过氧化作用引起的。锌不会引起PC和磷脂酰乙醇胺(PE)的定量变化,但会引起磷脂脂质饱和度变化,这似乎对于真菌适应金属的存在很重要。较高的PC饱和度可以平衡PC含量的增加,从而有助于维持适当的膜流动性,并减轻Cd和Ni引起的应力。这些结果将有助于阐明Pb毒性的机制,并有助于阐明真菌膜对重金属的适应性的细胞基础。

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