首页> 美国卫生研究院文献>Biochemical Journal >Molecular characterization of the thi3 gene involved in thiamine biosynthesis in Zea mays: cDNA sequence and enzymatic and structural properties of the recombinant bifunctional protein with 4-amino-5-hydroxymethyl-2-methylpyrimidine (phosphate) kinase and thiamine monophosphate synthase activities
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Molecular characterization of the thi3 gene involved in thiamine biosynthesis in Zea mays: cDNA sequence and enzymatic and structural properties of the recombinant bifunctional protein with 4-amino-5-hydroxymethyl-2-methylpyrimidine (phosphate) kinase and thiamine monophosphate synthase activities

机译:玉米中硫胺素生物合成中涉及的thi3基因的分子表征:具有4-氨基-5-羟甲基-2-甲基嘧啶(磷酸)激酶和硫胺素单磷酸合酶活性的重组双功能蛋白的cDNA序列酶学和结构特性

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摘要

A thiamine biosynthesis gene, thi3, from maize Zea mays has been identified through cloning and sequencing of cDNA and heterologous overexpression of the encoded protein, THI3, in Escherichia coli. The recombinant THI3 protein was purified to homogeneity and shown to possess two essentially different enzymatic activities of HMP(-P) [4-amino-5-hydroxymethyl-2-methylpyrimidine (phosphate)] kinase and TMP (thiamine monophosphate) synthase. Both activities were characterized in terms of basic kinetic constants, with interesting findings that TMP synthase is uncompetitively inhibited by excess of one of the substrates [HMP-PP (HMP diphosphate)] and ATP. A bioinformatic analysis of the THI3 sequence suggested that these activities were located in two distinct, N-terminal kinase and C-terminal synthase, domains. Models of the overall folds of THI3 domains and the arrangements of active centre residues were obtained with the SWISS-MODEL protein modelling server, on the basis of the known three-dimensional structures of Salmonella enterica serotype Typhimurium HMP(-P) kinase and Bacillus subtilis TMP synthase. The essential roles of Gln98 and Met134 residues for HMP kinase activity and of Ser444 for TMP synthase activity were experimentally confirmed by site-directed mutagenesis.
机译:通过玉米的cDNA克隆和测序以及编码的蛋白质THI3的异源过表达,已经鉴定了玉米玉米中的硫胺素生物合成基因thi3。重组THI3蛋白被纯化至同质,显示具有HMP(-P)[4-氨基-5-羟甲基-2-甲基嘧啶(磷酸)]激酶和TMP(硫胺素单磷酸)合酶的两种基本不同的酶活性。两种活性均以基本动力学常数来表征,有趣的发现是,TMP合酶不受底物之一[HMP-PP(HMP diphosphate)]和ATP的竞争性抑制。 THI3序列的生物信息学分析表明,这些活性位于两个不同的N端激酶和C端合酶域中。在已知的肠炎沙门氏菌血清型鼠伤寒HMP(-P)激酶和枯草芽孢杆菌的三维结构的基础上,用SWISS-MODEL蛋白建模服务器获得了THI3结构域的整体折叠和活性中心残基的排列模型TMP合酶。通过定点实验证实了Gln 98 和Met 134 残基对于HMP激酶活性和Ser 444 对TMP合酶活性的重要作用。诱变。

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