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陆地蜗牛玛瑙螺细胞和器官中镉和铜特异性金属硫蛋白同工型mRNA的定位与定量分析

Localization and quantification of Cd- and Cu-specific metallothionein isoform mRNA in cells and organs of the terrestrial gastropod Helix pomatia.

作者信息

Chabicovsky Monika, Niederstätter Harald, Thaler Renate, Hödl Elisabeth, Parson Walther, Rossmanith Walter, Dallinger Reinhard

机构信息

Institute of Zoology and Limnology, University of Innsbruck, Technikerstr 25, 6020 Innsbruck, Austria.

出版信息

Toxicol Appl Pharmacol. 2003 Jul 1;190(1):25-36. doi: 10.1016/s0041-008x(03)00148-0.

Abstract

A quantitative assay based on real-time detection polymerase chain reaction (rtdPCR) was applied to analyze basal and metal-induced mRNA levels of two metallothionein (MT) isoforms (Cd-MT and Cu-MT) in organs of the terrestrial gastropod Helix pomatia. The results show that specific Cd-MT mRNA levels increase with Cd tissue burden, identifying hepatopancreas and gut as the main organs of Cd accumulation and, accordingly, the predominant organs of Cd-MT mRNA expression. In situ hybridization localized this isoform in epithelial cells of hepatopancreas, gut, and kidney. In contrast to the observed Cd-dependent inducibility of the Cd-binding MT isoform, gene expression of the Cu-binding MT could not be induced by either Cd or Cu exposure. Only very low mRNA amounts of the Cu-MT isoform were found in snail hepatopancreas and kidney, whereas the mantle exhibited high basal mRNA levels of this isoform. In situ localization revealed that the Cu-MT gene expression was restricted to one cell type, the so-called rhogocytes, which are present to various extents in the different organs examined. These results suggest a metal-specific sharing of functions between the two MT isoforms. The Cd-MT isoform apparently plays a crucial role in Cd detoxification, as demonstrated by the inducibility of this isoform, as well as its specific localization in the main metabolic and Cd storing organs. The predominant presence of Cu-MT in rhogocytes of snail mantle strengthens the hypothesis that this isoform may regulate Cu availability in hemocyanin synthesis.

摘要

应用基于实时检测聚合酶链反应(rtdPCR)的定量分析方法,分析陆生腹足动物玛瑙螺(Helix pomatia)各器官中两种金属硫蛋白(MT)亚型(镉-MT和铜-MT)的基础mRNA水平以及金属诱导的mRNA水平。结果表明,特定的镉-MT mRNA水平随镉在组织中的负荷增加而升高,确定肝胰腺和肠道为镉积累的主要器官,因此也是镉-MT mRNA表达的主要器官。原位杂交将该亚型定位在肝胰腺、肠道和肾脏的上皮细胞中。与观察到的镉结合MT亚型的镉依赖性诱导性相反,铜结合MT的基因表达在镉或铜暴露后均未被诱导。在蜗牛的肝胰腺和肾脏中仅发现极低量的铜-MT亚型mRNA,而外套膜中该亚型的基础mRNA水平较高。原位定位显示,铜-MT基因表达局限于一种细胞类型,即所谓的血淋巴细胞,在所检查的不同器官中均有不同程度的存在。这些结果表明两种MT亚型之间存在金属特异性的功能分担。镉-MT亚型显然在镉解毒中起关键作用,这一点通过该亚型的可诱导性及其在主要代谢和镉储存器官中的特定定位得到证明。蜗牛外套膜血淋巴细胞中铜-MT的主要存在强化了这样一种假设,即该亚型可能在血蓝蛋白合成中调节铜的可用性。

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