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首页> 外文期刊>Asian Journal of Agriculture and Biology >Protein modeling and evolutionary analysis of Calmodulin Binding Transcription Activator (CAMTA) gene family in Sorghum bicolor
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Protein modeling and evolutionary analysis of Calmodulin Binding Transcription Activator (CAMTA) gene family in Sorghum bicolor

机译:双色高粱钙调蛋白结合转录激活子(CAMTA)基因家族的蛋白质建模和进化分析

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Calmodulin Binding Transcription Activator (CAMTA) family is present in almost all plants and in many animals. CAMTA are named so due to the presence of specific calmodulin binding domain which is an important Ca2+ transducer. Multiple sequence alignment and phylogenetic analysis of CAMTA proteins in Sorghum bicolor , Oryza sativa, Zea mays, Glycine max and Arabidopsis thaliana showed highly conserved sequence and evolutionary similarity. In Sorghum bicolor six CAMTA proteins were identified to be located in nucleus. These proteins were named on the basis of their location on the chromosomes. Alignment and phylogenetic tree clearly indicates close similarity in monocot and dicot ancestry which appears on the same clade but diverged from each other with time. Almost all CAMTA proteins share same domain organizations. A highly conserved motif sequence in these species was identified which might play some important functional roles. In order to understand structural and DNA binding patterns of SbCAMTA proteins, 3-D models of proteins structure and their domains revealed many important DNA binding residues playing their role in protein-protein interaction and structural modification.. A further detailed study of the CAMTA protein members in sorghum may explore their mode of interaction and exact function in signaling mechanism under abiotic stresses.
机译:钙调蛋白结合转录激活剂(CAMTA)家族存在于几乎所有植物和许多动物中。 CAMTA之所以如此命名,是因为存在特定的钙调蛋白结合域,而钙调蛋白结合域是重要的Ca2 +传感器。双色高粱,水稻,玉米,大豆,大豆和拟南芥中的CAMTA蛋白的多序列比对和系统发育分析表明,它们具有高度保守的序列和进化相似性。在双色高粱中,六个CAMTA蛋白被鉴定为位于细胞核中。这些蛋白质是根据它们在染色体上的位置命名的。排列和系统发育树清楚地表明了单子叶植物和双子叶植物祖先的相似性,它们出现在同一进化枝上,但随着时间的流逝而彼此分离。几乎所有CAMTA蛋白都共享相同的域结构。在这些物种中鉴定出高度保守的基序序列,其可能起一些重要的功能作用。为了了解SbCAMTA蛋白质的结构和DNA结合模式,蛋白质结构及其域的3-D模型揭示了许多重要的DNA结合残基在蛋白质-蛋白质相互作用和结构修饰中发挥着作用。.CAMTA蛋白质的进一步详细研究高粱中的成员可能会在非生物胁迫下探索其相互作用方式和信号机制中的确切功能。

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