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首页> 外文期刊>Ecotoxicology and Environmental Safety >Alterations in the properties of sperm protamine-like Ⅱ protein after exposure of Mytilus galloprovincialis (Lamarck 1819) to sub-toxic doses of cadmium
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Alterations in the properties of sperm protamine-like Ⅱ protein after exposure of Mytilus galloprovincialis (Lamarck 1819) to sub-toxic doses of cadmium

机译:暴露于中毒性剂量的镉的Mytilus galloprovincialis(Lamarck 1819)后,精子鱼精蛋白样Ⅱ蛋白的性质改变

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摘要

Protamine-like proteins (PL-II, PL-III and PL-IV) represent the major basic nuclear component of Mytilus galloprovincialis L sperm chromatin. The present study investigates the effects induced on the properties of PL-II protein after exposure of Mytilus galloprovincialis L for 24 h to 1.5 and 5 mu M CdCl2. We found cadmium accumulation in protamine-like proteins with a linear grow up with the exposition dose. In particular, after 5 mu M CdCl2 mussels exposure, the mobility of PL-II band changed in SDS-PAGE, suggesting structural rearrangement in presence of cadmium. Structural analysis using fluorescent probes, indicated that at 5 mu M CdCl2 the complete conformational change of PL-II protein was reached. In the same condition of mussels exposure of 5 mu M CdCl2, PL-II protein changed its DNA binding mode, which determined a closer DNA binding, because higher amount of NaCl were required for PL-II protein release by sperm nuclei. These results supported the hypothesis that mussel exposure to this CdCl2 dose, although lower to toxic ones, affects the properties of this protein and as a consequence chromatin organization of spermatozoa that is essential for the success of fertilization.
机译:鱼精蛋白样蛋白(PL-II,PL-III和PL-IV)代表了Mytilus galloprovincialis L精子染色质的主要基本核成分。本研究调查了对Mytilus galloprovincialis L暴露于1.5和5μM CdCl2 24 h后对PL-II蛋白性质的影响。我们发现镉在鱼精蛋白样蛋白中的积累与暴露剂量呈线性关系。特别是,在5μM CdCl2贻贝暴露后,PL-II带的迁移率在SDS-PAGE中发生了变化,表明存在镉时结构发生了重排。使用荧光探针的结构分析表明,在5μM CdCl2下,PL-II蛋白的构象发生了完全改变。在贻贝暴露于5μM CdCl2的相同条件下,PL-II蛋白改变了其DNA结合模式,从而确定了更紧密的DNA结合,因为通过精子核释放PL-II蛋白需要更多的NaCl量。这些结果支持这样的假说,即贻贝暴露于这种CdCl2剂量,尽管毒性较低,但会影响该蛋白质的特性,因此影响精子的染色质组织,这对受精成功至关重要。

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