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Protein and metal concentrations in two fractions of hepatic cytosol of the European chub (Squalius cephalus L.)

机译:欧洲(Squalius cephalus L.)的肝细胞溶质两部分中的蛋白质和金属浓度

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摘要

Indigenous specimens of European chub were caught at five sites in Sava River during two successive non-reproductive periods and used as bioindicator organisms for the assessment of metal accumulation. Liver was selected as a target organ and the metal concentrations (Zn, Cu, Fe, Mn, and Cd) were determined in two fractions of hepatic cytosol, namely in untreated (S50) and heat-treated (HT S50) fraction. In addition, the concentrations of total cytosolic proteins were measured in untreated (S50) fractions, whereas the concentrations of specific metal-binding proteins, i.e. metallothioneins, were determined in the heat-treated fractions. Concentrations of Zn and Fe were significantly higher in the untreated compared to heat-treated cytosol, because these metals are associated to the heat-sensitive metalloenzyme and high molecular mass proteins. On the contrary, Cu, Mn and Cd were predominantly present in the heat-treated cytosol, which contains metallothioneins. In both fractions of hepatic cytosol, nonessential metal Cd showed statistically significant increase from the upstream sites (median 5 ng mL~(-1)) toward the downstream site Jasenovac (median 11 ng ml~(-1)). The metallothionein concentrations, on the contrary, did not differ between sites, probably due to low dissolved and labile concentrations of metals known as metallothionein inducers (Zn, Cu, and especially Cd) in river water. Therefore, Cd concentrations in hepatic cytosol of European chub can be recommended as an early-warning marker of fish chronic exposure to Cd from combined sources, water and ingested food.
机译:在两个连续的非繁殖期中,在萨瓦河的五个地点捕获了欧洲的土著标本,并将其用作评估金属积累的生物指示生物。选择肝脏作为靶器官,并在肝细胞溶质的两个部分(即未处理的(S50)和热处理的(HT S50)部分)中测定金属浓度(Zn,Cu,Fe,Mn和Cd)。另外,在未处理的(S50)级分中测量了总胞质蛋白的浓度,而在热处理的级分中确定了特定的金属结合蛋白即金属硫蛋白的浓度。与热处理的细胞质溶胶相比,未经处理的锌和铁的浓度明显更高,因为这些金属与热敏性金属酶和高分子蛋白质有关。相反,在含有金属硫蛋白的热处理过的细胞质中主要存在Cu,Mn和Cd。在肝细胞溶质的两个部分中,非必需金属Cd从上游位点(中值5 ng mL〜(-1))向下游位点Jasenovac(中位值11 ng ml〜(-1))显示出统计学上的显着增加。相反,金属硫蛋白的浓度在两个站点之间没有差异,这可能是由于河水中的金属硫蛋白诱导剂(锌,铜,尤其是镉)的溶解度和不稳定浓度较低。因此,可以建议将欧洲的肝细胞溶质中的Cd浓度作为鱼类长期接触Cd的预警标志,这些源来自水,摄入的食物和食物。

著录项

  • 来源
    《Chemosphere》 |2009年第7期|843-849|共7页
  • 作者单位

    Ruder Boskovic Institute, Division for Marine and Environmental Research, P.O. Box 180, 10002 Zagreb, Croatia;

    Ruder Boskovic Institute, Division for Marine and Environmental Research, P.O. Box 180, 10002 Zagreb, Croatia;

    Ruder Boskovic Institute, Division for Marine and Environmental Research, P.O. Box 180, 10002 Zagreb, Croatia;

    Ruder Boskovic Institute, Division for Marine and Environmental Research, P.O. Box 180, 10002 Zagreb, Croatia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    freshwater fish; hepatic cytosol; essential metals; cadmium; metallothionein;

    机译:淡水鱼;肝细胞溶质必需金属;镉;金属硫蛋白;

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