首页> 外文期刊>Acta biologica Cracoviensia. Series botanica >Plant metallothioneins: Putative functions identified by promoter analysis in silico
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Plant metallothioneins: Putative functions identified by promoter analysis in silico

机译:植物金属硫蛋白:通过计算机启动子分析鉴定的推定功能

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Metallothioneins are low-molecular-weight proteins capable of covalently binding heavy metal ions due to the presence of many cysteine residues in their sequences. We analyzed the predicted amino acid sequences of 19 metallothionein (7 from Arabidopsis thaliana and 12 from Oryza sativa) and their promoter sequences in silico in order to determine the potential regulatory cis-elements present in the promoters of metallothionein genes, from which it is possible to determine the putative functions of these genes. The Plant CARE and PLACE databases provided information about the putative regulatory elements in the metallothionein promoters. Metal response element sequences were found in the promoters of eleven O. sativa and two Arabidopsis metallothionein genes. Copper response elements were identified in both model plants, usually in many copies, particularly in O. sativa. Both the high cysteine content and the presence of metal response motifs in the promoters support the suggestion that metallothioneins play a key role in metal detoxification. The most common putative element in the analyzed promoters was CIRCADIAN, which was present in five A. thaliana and eight O. sativa sequences. The methyl jasmonate response sequence, root-specific expression element and drought response element were found only in O. sativa metallothioneins. Light and low temperature response elements, biotic and abiotic stress elements, an abscisic acid-responsive element and an ethylene-responsive element occur in selected metallothionein promoters of both species. A few promoters have putative organ- and cell-specific regulatory elements. The presence of many different motifs in the promoters of the Arabidopsis and O. sativa genes implies that metallothioneins are general stress response proteins with many important functions in plants, including regulation of their normal development and adaptation to changing environmental conditions.
机译:金属硫蛋白是由于其序列中存在许多半胱氨酸残基而能够共价结合重金属离子的低分子量蛋白质。我们分析了19种金属硫蛋白的预测氨基酸序列(拟南芥中的7种和水稻的12种)及其在计算机上的启动子序列,以确定存在于金属硫蛋白基因启动子中的潜在调控顺式元素。确定这些基因的假定功能。 Plant CARE和PLACE数据库提供了有关金属硫蛋白启动子中假定的调控元件的信息。在11个水稻和两个拟南芥金属硫蛋白基因的启动子中发现了金属反应元件序列。在两种模型植物中都鉴定出铜响应元素,通常以许多拷贝形式存在,特别是在稻中。高半胱氨酸含量和启动子中金属反应基序的存在均支持金属硫蛋白在金属排毒中起关键作用的建议。在分析的启动子中最常见的推定元件是CIRCADIAN,它存在于五个拟南芥和八个紫花苜蓿序列中。茉莉酸甲酯响应序列,根特异性表达元件和干旱响应元件仅在稻中金属硫蛋白中发现。光和低温响应元件,生物和非生物胁迫元件,脱落酸响应元件和乙烯响应元件出现在两个物种的选定金属硫蛋白启动子中。一些启动子具有推测的器官和细胞特异性调控元件。拟南芥和水稻基因启动子中存在许多不同的基序,这表明金属硫蛋白是植物中具有许多重要功能的普通胁迫反应蛋白,包括调节其正常发育和适应不断变化的环境条件。

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