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首页> 外文期刊>The Biochemical Journal >Mutation of aspartic acid residues in the fructosyltransferase of Streptococcus salivarius ATCC 25975.
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Mutation of aspartic acid residues in the fructosyltransferase of Streptococcus salivarius ATCC 25975.

机译:唾液链球菌ATCC 25975的果糖基转移酶中的天冬氨酸残基突变。

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摘要

The site-directed mutated fructosyltransferases (Ftfs) of Streptococcus salivarius ATCC 25975, D312E, D312S, D312N and D312K were all active at 37 degrees C, indicating that Asp-312 present in the 'sucrose box' was not the nucleophilic Asp residue responsible for the formation of a covalent fructosyl-enzyme intermediate required for enzyme activity. Analysis of the kinetic constants of the purified mutated forms of the enzyme showed that Asp-312 was most likely an essential amino acid involved in determining acceptor recognition and/or stabilizing a beta-turn in the protein. In contrast, when the Asp-397 of the Ftf present in the conserved triplet RDP motif of all 60 bacterial and plant family-32 glycosylhydrolases was mutated to a Ser residue, both sucrose hydrolysis and polymerization ceased. Tryptophan emission spectra confirmed that this mutation did not alter protein structure. Comparison of published data from other site-directed mutated enzymes implicated the Asp residue in the RDP motif as the one that may form a transient covalent fructosyl intermediate during the catalysis of sucrose by the Ftf of S. salivarius.
机译:唾液链球菌ATCC 25975,D312E,D312S,D312N和D312K的定点突变果糖基转移酶(Ftfs)在37°C时都具有活性,表明存在于“蔗糖盒”中的Asp-312不是负责亲核的Asp残基形成酶活性所需的共价果糖基酶中间体。对酶的纯化突变形式的动力学常数的分析表明,Asp-312最有可能是参与确定受体识别和/或稳定蛋白质中β转变的必需氨基酸。相反,当存在于所有60个细菌和植物家族32糖基水解酶的保守三联体RDP基序中的Ftf的Asp-397突变为Ser残基时,蔗糖水解和聚合反应均停止。色氨酸发射光​​谱证实该突变不会改变蛋白质结构。来自其他定点突变酶的公开数据比较表明,RDP基序中的Asp残基可能在唾液链球菌Ftf催化蔗糖过程中形成瞬时共价果糖基中间体。

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