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A novel metallothionein gene from a mangrove plant Kandelia candel

机译:一种来自红树植物秋茄(Kandelia candel)的新型金属硫蛋白基因

摘要

A new metallothionein (MT) gene was cloned from Kandelia candel, a mangrove plant with constitutional tolerance to heavy metals, by rapid amplification of cDNA ends and named KMT, which is composed of two exons and one intron. The full length of KMT cDNA was 728 bp including 121 bp 5' noncoding domain, 240 bp open reading frame and 384 bp 3' termination. The coding region of KMT represented a putative 79 amino acid protein with a molecular weight of 7.75 kDa. At each of the amino- and carboxy-terminal of the putative protein, cysteine residues were arranged in Cys-Cys, Cys-X-Cys and Cys-X-X-Cys, indicating that the putative protein was a novel type 2 MT. Sequence and homology analysis showed the KMT protein sequence shared more than 60 % homology with other plant type 2 MT-like protein genes. At amino acid level, the KMT was shown homology with the MT of Quercus suber (83 %), of Ricinus communis (81 %) and of Arabidopsis thaliana (64 %). Function studies using protease-deficient Escherichia coli strain BL21 Star (TM)(DE3) confirmed the functional nature of this KMT gene in sequestering both essential (Zn) and non-essential metals (Cd and Hg) and the E. coli BL21 with KMT can live in 1,000 mu mol/L Zn, 120 mu mol/L Hg, and 2,000 mu mol/L Cd. The information could provide more details of the causative molecular and biochemical mechanisms (including heavy metal sequestration) of the KMT in K. candel or a scientific basis for marine heavy-metal environment remediation with K. candel. This study also provides a great significance of protecting mangrove species and mangrove ecosystem.
机译:通过快速扩增cDNA末端,从具有对重金属的结构耐受性的红树植物Kandelia candel克隆了一个新的金属硫蛋白(MT)基因,命名为KMT,它由两个外显子和一个内含子组成。 KMT cDNA的全长为728 bp,包括121 bp的5'非编码结构域,240 bp的开放阅读框和384 bp的3'末端。 KMT的编码区代表分子量为7.75 kDa的79个氨基酸。在推定蛋白质的每个氨基和羧基末端,半胱氨酸残基排列在Cys-Cys,Cys-X-Cys和Cys-X-X-Cys中,表明推定蛋白质是一种新型2 MT。序列和同源性分析表明,KMT蛋白序列与其他植物2型MT样蛋白基因具有60%以上的同源性。在氨基酸水平上,显示出KMT与Quercus suber(83%),Ricinus communis(81%)和Arabidopsis thaliana(64%)的MT同源。使用蛋白酶缺陷型大肠杆菌BL21 Star(TM)(DE3)进行的功能研究证实了该KMT基因在隔离必需(Zn)和非必需金属(Cd和Hg)以及带有KMT的大肠杆菌BL21中的功能性质可以生活在1,000摩尔/升的锌,120摩尔/升的汞和2,000摩尔/升的镉中。这些信息可以提供有关K. candel中KMT的致病分子和生化机制(包括重金属螯合)的更多详细信息,或用K. candel修复海洋重金属环境的科学依据。这项研究也对保护红树林物种和红树林生态系统具有重要意义。

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