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金属硫蛋白在海洋动物金属积累动力学中的意义。

Significance of metallothioneins in metal accumulation kinetics in marine animals.

机构信息

Department of Biology, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2010 Jun;152(1):1-8. doi: 10.1016/j.cbpc.2010.02.015. Epub 2010 Mar 3.

Abstract

Marine animals can induce metallothioneins (MTs) in their responses to exposure to certain trace metals in the environment. MTs generally function as metal storage/detoxification or homeostatic regulation of both essential and non-essential metals. This review discusses the important roles of MTs in metal biokinetics other than metal detoxification and homeostasis in marine animals. Recent studies have revealed the complicated cellular and biochemical processes involving intracellular ligands (cytosolic proteins and insoluble deposits) during metal uptake and elimination. The responses of metal biokinetics to MT induction are metal- and organism-specific. Depending on the different marine animals and metals, all biokinetic parameters such as dissolved metal uptake rate, dietary assimilation efficiency and elimination (efflux) rate can be significantly impacted by MT induction. Among the different metal biokinetic parameters, dietary assimilation efficiency and elimination rate appear to be most impacted by MT induction. MT turnover kinetics can also significantly affect metal uptake kinetics, but again, such influence is also dependent on the organism, particularly its predominant pathway of metal detoxification. Even though the total MT pool in aquatic animals may remain constant, the turnover of MTs, involving MT synthesis and breakdown, can potentially lead to a major change of metal accumulation biokinetics. We propose several issues that need to be further addressed in studying the interaction between MT induction and metal accumulation biokinetics.

摘要

海洋动物在应对环境中某些痕量金属暴露时会诱导金属硫蛋白(MTs)。MTs 通常作为金属储存/解毒或必需和非必需金属的体内平衡调节。本综述讨论了 MTs 在除金属解毒和体内平衡之外的金属生物动力学中的重要作用。最近的研究揭示了涉及细胞内配体(胞质蛋白和不溶性沉积物)的复杂细胞和生化过程,这些配体参与金属的摄取和消除。金属生物动力学对 MT 诱导的反应是金属和生物体特异性的。根据不同的海洋动物和金属,所有生物动力学参数,如溶解金属摄取率、膳食同化效率和消除(外排)率,都可能受到 MT 诱导的显著影响。在不同的金属生物动力学参数中,膳食同化效率和消除率似乎受 MT 诱导的影响最大。MT 周转率动力学也可能显著影响金属摄取动力学,但同样,这种影响也取决于生物体,特别是其主要的金属解毒途径。尽管水生动物的总 MT 池可能保持不变,但 MT 的周转,包括 MT 的合成和分解,可能会导致金属积累生物动力学的重大变化。我们提出了在研究 MT 诱导与金属积累生物动力学之间相互作用时需要进一步解决的几个问题。

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