首页> 外文会议>2010 4th International Conference on Bioinformatics and Biomedical Engineering >Molecular Characterization of Multi-Functional Acetyl Coenzyme A Carboxylase, Biotin Carboxylase and beta-Carboxyltransferase from Arachis hypogaea L
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Molecular Characterization of Multi-Functional Acetyl Coenzyme A Carboxylase, Biotin Carboxylase and beta-Carboxyltransferase from Arachis hypogaea L

机译:花生亚基的多功能乙酰辅酶A羧化酶,生物素羧化酶和β-羧化酶的分子表征

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Acetyl-CoA carboxylase (ACCase; EC 6.4.1.2) catalyzes the synthesis of malonyl-CoA, the first intermediate in fatty acid synthesis. Genes for multi-functional acetyl-CoA carboxylase and two subunits of multi-subunit acetyl-CoA carboxylase, biotin carboxylase and β-Carboxyltransferase, have been cloned from peanut. The ORF of the three proteins are 6783bp, 1623bp, 1479 bp in length, encoding 2260, 540, 492 amino acids, respectively. The predicted amino acid sequences of the multi-functional AhACCase and AhBC from peanut shared high sequence identity, 90.9% and 88%, to the corresponding Glycine max proteins, respectively, while the amino acid sequence of AhβCT gene showed 71.6% identity with that from Nothofagus gunnii. Phylogenetic analysis showed that all of these three genes from peanut were grouped into the big branch of proteins from higher plant. Moreover, observation of the tree revealed that multi-functional ACCase genes may arise by independent gene duplication events in green algae and higher plants branches, and the biotin carboxylase and β-Carboxyltransferase genes from cyanobacteria may be the origin of genes from higher plants, mosses and eukaryotic algae.
机译:乙酰-CoA羧化酶(Accase; EC 6.4.1.2)催化丙二酰库的合成,脂肪酸合成中的第一中间体。多官能乙酰-CoA羧化酶的基因和多亚基乙酰辅酶羧化酶,生物素羧酸酯和β-羧基转移酶的两个亚基已被花生克隆。三种蛋白质的ORF分别为6783bp,1623bp,1479bp,分别编码2260,540,492氨基酸。多功能Ahaccase的预测氨基酸序列和来自花生共享的高序列同一性,90.9%和88%,分别对相应的甘氨酸最大蛋白,而AhβCT基因的氨基酸序列显示出71.6%的同一性Nothofagus gunnii。系统发育分析表明,来自花生的所有这三种基因被分组到高等植物中的蛋白质的大分支中。此外,树木观察显示,多功能丙酸组可能在绿藻中的独立基因重复事件和高等植物分支中产生,并且来自蓝藻的生物素羧化酶和β-羧基转移酶基因可能是来自高等植物,苔藓的基因的起源和真核藻类。

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