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Molecular cloning and characterization of iIpomoea nil/i metallothioneins

机译:番薯金属硫蛋白的分子克隆与鉴定

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Metallothioneins are low-molecular-weight, cysteine-rich proteins able to bind a variety of heavy metal ions. They are involved in the maintenance of micronutrient homeostasis and detoxification of nonessential heavy metals. Plant metallothioneins are classified into four main types based on the number and arrangement of cysteine residues. Here we report on the isolation of novel complementary and genomic DNA from a model for a short-day plant, Ipomoea nil (Japanese morning glory), that encodes 66- or 76-amino acid residue proteins. In silico and phylogenetic analysis of putative amino acid sequences confirmed that these 66- and 76-amino acid residue proteins belong, respectively, to type 1 and type 2 plant metallothioneins. In genomic sequences of the analyzed metallothioneins, two introns were recognized, one of them located at an evolutionary conserved position. Furthermore, examination of the expression patterns of cloned metallothioneins in I. nil organs and in cotyledons in response to copper and zinc exposure suggested that their physiological functions could be diversified. Moreover, the observed changes of analyzed I. nil metallothioneins in response to heavy metal treatment indicate that InMT1 may be involved in copper homeostasis in I. nil cotyledons. The role of InMT2 in micronutrient homeostasis remains questionable.
机译:金属硫蛋白是能够结合多种重金属离子的低分子量,富含半胱氨酸的蛋白质。它们参与微量营养素稳态的维持和非必需重金属的解毒。根据半胱氨酸残基的数量和排列,植物金属硫蛋白可分为四种主要类型。在这里,我们报告了从短时植株Ipomoea nil(日本牵牛花)的模型中分离出新型互补和基因组DNA的情况,该模型编码66个或76个氨基酸的残基蛋白。在计算机和系统发育分析中推测的氨基酸序列证实,这些66和76个氨基酸的残基蛋白质分别属于1型和2型植物金属硫蛋白。在分析的金属硫蛋白的基因组序列中,识别出两个内含子,其中一个位于进化保守位置。此外,对克隆的金属硫蛋白在铜绿假单胞菌和子叶中响应铜和锌暴露的表达模式的研究表明,它们的生理功能可以多样化。此外,观察到的分析的无臭金丝雀金属硫蛋白响应重金属处理的变化表明,InMT1可能参与无臭金丝雀子叶的铜稳态。 InMT2在微量营养素稳态中的作用仍然值得怀疑。

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