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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Molecular and functional evolution of Tetrahymena metallothioneins: New insights into the gene family of Tetrahymena thermophila
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Molecular and functional evolution of Tetrahymena metallothioneins: New insights into the gene family of Tetrahymena thermophila

机译:四膜虫金属硫蛋白的分子和功能进化:对嗜热四膜菌基因家族的新见解

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摘要

A new metallothionein (MTT-5) gene isoform has been cloned and characterized from the ciliate Tetrahymena thermophila. Its amino acid sequence shows only limited similarity with other Tetrahymena MTs. To investigate the transcriptional activity of this gene toward heavy metals (Cd, Cu, Zn), mRNA levels were evaluated by real-time quantitative PCR. Results show that the three metals induce different MTT-5-mRNA levels, Cd treatment eliciting the most effective induction in the first 30 min. Phylogenetic analyses of all Tetrahymena NIT protein sequences revealed that MTT-5 is closely related to Cd-induced isoforms and quite separate from Cu-induced ones. Our results indicate that Cd and Cu MTs diverged early in evolution, before the speciation event which separated the Tetrahymena borealis group from the Tetrahymena australis group. The mutation rate in the Tetrahymena NIT group is heterogeneous, being very low for MT-1 and MTT-1 and higher for the other isoforms, particularly for MTT-5, which shows the maximum divergence among the Cd-induced MTs. This observation, together with the evidence of its inducibility by Zn - a unique condition among T thermophila MTs - indicates that MTT-5 underwent a particular evolutionary history, independent of other MT isoforms. (c) 2006 Elsevier Inc. All rights reserved.
机译:一种新的金属硫蛋白(MTT-5)基因同工型已从纤毛四膜虫嗜热菌中克隆并鉴定。其氨基酸序列仅显示与其他四膜虫MT的有限相似性。为了研究该基因对重金属(Cd,Cu,Zn)的转录活性,通过实时定量PCR评估了mRNA水平。结果表明,三种金属诱导不同的MTT-5-mRNA水平,Cd处理在前30分钟引起最有效的诱导。对所有四膜虫NIT蛋白序列的系统进化分析表明,MTT-5与Cd诱导的同工型密切相关,与Cu诱导的同工型完全不同。我们的结果表明,在物种形成事件之前,Cd和Cu MTs在进化过程中发生了分化,从而使北方四膜虫群与南方四膜虫群分离。四膜虫NIT组的突变率是异质的,对于MT-1和MTT-1非常低,而对于其他同工型,特别是对于MTT-5,突变率较高,这表明Cd诱导的MT之间存在最大差异。该观察结果,以及其被Zn诱导的证据-嗜热性结核菌MTs中的独特条件-表明MTT-5经历了特定的进化史,而与其他MT同工型无关。 (c)2006 Elsevier Inc.保留所有权利。

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