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动物体内金属硫蛋白的表达:功能的生理学视角

Metallothionein expression in animals: a physiological perspective on function.

作者信息

Davis S R, Cousins R J

机构信息

Center for Nutritional Sciences, Food Science and Human Nutrition Department, University of Florida, Gainesville FL 32611-0370, USA.

出版信息

J Nutr. 2000 May;130(5):1085-8. doi: 10.1093/jn/130.5.1085.

Abstract

An integration of knowledge concerning regulation of metallothionein expression with research on metallothionein's proposed functions is necessary to delineate how this metalloprotein affects cellular processes, especially zinc metabolism. Metallothionein expression is driven by a number of physiological mediators through several response elements in the metallothionein gene promoter. Cellular accumulation of metallothionein depends on both gene expression and protein degradation. Both depend largely on availability of cellular zinc derived from the dietary zinc supply. Metallothionein expression is related to zinc accumulation in certain organs. Evidence has been produced, which suggests that metallothionein could act in a number of biochemical processes. It may act in zinc trafficking and/or zinc donation to apoproteins, including zinc finger proteins that act in cellular signaling and transcriptional regulation. As a result, metallothionein expression may affect a number of cellular processes including gene expression, apoptosis, proliferation and differentiation. The ability of metallothionein to exchange other metals with zinc in these proteins may explain a role in metal toxicity. Similarly, mobilization of zinc from metallothionein by oxidative stresses may explain its proposed antioxidant function. Apparent good health of metallothionein-deficient mice argues against a critical biological role for metallothionein; however, expression may be critical in times of stress.

摘要

将有关金属硫蛋白表达调控的知识与对金属硫蛋白假定功能的研究相结合,对于阐明这种金属蛋白如何影响细胞过程,尤其是锌代谢至关重要。金属硫蛋白的表达由多种生理介质通过金属硫蛋白基因启动子中的多个反应元件驱动。金属硫蛋白在细胞内的积累取决于基因表达和蛋白质降解。这两者在很大程度上都取决于从膳食锌供应中获取的细胞内锌的可用性。金属硫蛋白的表达与某些器官中的锌积累有关。已有证据表明,金属硫蛋白可能在许多生化过程中发挥作用。它可能在锌的运输和/或向载脂蛋白提供锌的过程中发挥作用,包括在细胞信号传导和转录调控中起作用的锌指蛋白。因此,金属硫蛋白的表达可能会影响许多细胞过程,包括基因表达、细胞凋亡、增殖和分化。金属硫蛋白在这些蛋白质中与锌交换其他金属的能力可能解释了其在金属毒性中的作用。同样,氧化应激从金属硫蛋白中动员锌可能解释了其假定的抗氧化功能。金属硫蛋白缺陷小鼠看似健康的状况表明金属硫蛋白没有关键的生物学作用;然而,在应激时期其表达可能至关重要。

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