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DYNAMICS OF METAL SUBCELLULAR DISTRIBUTION AND ITS RELATIONSHIP WITH METAL UPTAKE IN MARINE MUSSELS

机译:海洋贻贝中金属亚细胞分布的动力学及其与金属摄取的关系

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摘要

We examined the dynamics of subcellular distribution of metals (Cd, Ag, and Zn) in the marine green mussel Perna viridis by partitioning the metals into the insoluble fraction (IF), heat-sensitive proteins (HSP), and metallothionein-like proteins (MTLP) during metal uptake and elimination. Variations in metal uptake and elimination then were correlated with the subcellular distributions of these metals. The IF and HSP were the first ligands to bind with the metals during the dissolved exposure, and more metals were found in the HSP when the metal influx rate was higher. However, to minimize toxicity, metals were redistributed from HSP to MTLP afterwards. The subcellular distribution of metals was dependent of the exposure route in the mussels. During dietary metal exposure, the metals attained equilibrium before they were assimilated and the metal assimilation efficiency was independent of the metal partitioning in different subcellular fractions. During the efflux, metals in the soluble fraction mediated depuration, whereas metals in the insoluble fraction acted as a final storage pool. Redistribution also may occur between the metal-sensitive and inactive pools without significant depuration as a secondary protective mechanism. We further demonstrated that the higher efflux rate of Ag and Cd was related to a higher partitioning in the MTLP and a lower partitioning in the IF. Our study shows that subcellular pools other than MTLP were involved in immediate metal handling in the bivalves. The wide dynamics of subcellular metal distribution suggests that the relevance of individual subcellular fractions is dependent on the exposure pathway.
机译:我们通过将金属分为不溶级分(IF),热敏蛋白(HSP)和类金属硫蛋白( MTLP)期间的金属吸收和消除。然后,金属吸收和消除的变化与这些金属的亚细胞分布相关。 IF和HSP是在溶解的暴露过程中与金属结合的第一个配体,当金属的流入速率较高时,HSP中会发现更多的金属。但是,为了使毒性最小,此后将金属从HSP重新分配到MTLP。金属的亚细胞分布取决于贻贝中的暴露途径。在膳食金属暴露过程中,金属在被同化之前已达到平衡,并且金属同化效率与金属在不同亚细胞级分中的分配无关。在流出期间,可溶级分中的金属介导了净化作用,而不溶级分中的金属则充当了最终的储存池。作为次要保护机制,在金属敏感池和非活性池之间也可能发生重新分配,而没有明显的净化。我们进一步证明,较高的Ag和Cd外排率与MTLP中较高的分配和IF中较低的分配有关。我们的研究表明,除了MTLP以外,亚细胞池还参与了双壳类动物的即时金属处理。亚细胞金属分布的广泛动态表明,各个亚细胞部分的相关性取决于暴露途径。

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