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在胚胎期和成年期的蜗牛中,非金属选择性的镉/铜金属硫蛋白亚型的生理作用和毒理学意义有所不同。

The physiological role and toxicological significance of the non-metal-selective cadmium/copper-metallothionein isoform differ between embryonic and adult helicid snails.

作者信息

Pedrini-Martha Veronika, Schnegg Raimund, Baurand Pierre-Emmanuel, deVaufleury Annette, Dallinger Reinhard

机构信息

Department of Zoology, University of Innsbruck, Technikerstraße 25, 6020 Innsbruck, Austria.

Chrono-Environnement, UMR 6249 University of Franche-Comté, 16 route de Gray, 25030 Besançon cedex, France.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2017 Sep;199:38-47. doi: 10.1016/j.cbpc.2017.02.009. Epub 2017 Feb 22.

Abstract

Metal regulation is essential for terrestrial gastropods to survive. In helicid snails, two metal-selective metallothionein (MT) isoforms with different functions are expressed. A cadmium-selective isoform (CdMT) plays a major role in Cd detoxification and stress response, whereas a copper-selective MT (CuMT) is involved in Cu homeostasis and hemocyanin synthesis. A third, non-metal-selective isoform, called Cd/CuMT, was first characterized in Cantareus aspersus. The aim of this study was to quantify the transcriptional activity of all three MT genes in unexposed and metal-exposed (Cd, Cu) embryonic Roman snails. In addition, the complete Cd/CuMT mRNA of the Roman snail (Helix pomatia) was characterized, and its expression quantified in unexposed and Cd-treated adult individuals. In embryos of Helix pomatia, the Cd/CuMT gene was induced upon Cu exposure. Its transcription levels were many times higher than that of the other two MT genes, and also exceeded by far the Cd/CuMT mRNA concentrations of adult snails. In the hepatopancreas of adult Roman snails, no Cd/CuMT could be detected at the protein level, irrespective of whether the snails had been exposed to Cd or not. This contrasts with the situation in the near relative, Cantareus aspersus. It appeared that the 3'-UTR of the Cd/CuMT mRNA differed largely between Cantareus aspersus and Helix pomatia, being larger in the latter species, with a number of putative binding sites for proteins and miRNAs known to inhibit mRNA translation. We suggest this as a possible mechanism responsible for the lack of Cd/CuMT protein expression in adult Roman snails.

摘要

金属调节对于陆生腹足类动物的生存至关重要。在蜗牛科蜗牛中,表达了两种具有不同功能的金属选择性金属硫蛋白(MT)异构体。一种镉选择性异构体(CdMT)在镉解毒和应激反应中起主要作用,而铜选择性MT(CuMT)则参与铜稳态和血蓝蛋白合成。第三种非金属选择性异构体,称为Cd/CuMT,首次在庭院蜗牛中得到表征。本研究的目的是量化未暴露和暴露于金属(镉、铜)的罗马蜗牛胚胎中所有三种MT基因的转录活性。此外,还对罗马蜗牛(苹果蜗牛)的完整Cd/CuMT mRNA进行了表征,并在未暴露和经镉处理的成年个体中对其表达进行了量化。在苹果蜗牛的胚胎中,Cd/CuMT基因在铜暴露后被诱导。其转录水平比其他两种MT基因高出许多倍,也远远超过成年蜗牛的Cd/CuMT mRNA浓度。在成年罗马蜗牛的肝胰腺中,无论蜗牛是否暴露于镉,在蛋白质水平上都检测不到Cd/CuMT。这与近缘种庭院蜗牛的情况形成对比。Cd/CuMT mRNA的3'-UTR在庭院蜗牛和苹果蜗牛之间似乎有很大差异,后者的3'-UTR更大,有许多已知可抑制mRNA翻译的蛋白质和miRNA的推定结合位点。我们认为这是成年罗马蜗牛缺乏Cd/CuMT蛋白表达的一种可能机制。

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