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首页> 外文期刊>Protein engineering design & selection: PEDS >Computational design and experimental evaluation of glycosyltransferase mutants: engineering of a blood type B galactosyltransferase with enhanced glucosyltransferase activity
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Computational design and experimental evaluation of glycosyltransferase mutants: engineering of a blood type B galactosyltransferase with enhanced glucosyltransferase activity

机译:糖基转移酶突变体的计算设计和实验评估:增强糖基转移酶活性的血液B型半乳糖基转移酶工程

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摘要

Glycosyltransferases are an enormous and diverse class of enzyme encompassing 1% of all sequenced genomes. They catalyze the transfer of a monosaccharide from an activated donor such as a sugar-nucleotide to an acceptor molecule. Though the primary sequences of glycosyltransferases have little homology, X-ray structural studies on glycosyltransferases have revealed that there are two main folds and that the orientation of the sugar donors with respect to the folds is highly conserved. It seems that glycosyltransferases have evolved diversified specificities toward donor sugars by changing the amino acids around the monosaccharide moiety without altering the orientation of the nucleotide moiety. In this study, we designed new glycosyltransferases with altered donor specificities by use of a novel empirical model called the Epimer Propensity Index (EPI). The EPI was constructed using 221 carbohydrate-protein complex structures in the Protein Data Bank with either galactose or glucose in the complex. The blood type B synthesizing glycosyltransferase GTB, a galactosyltransferase was our target enzyme. Two GTB mutants designed to exhibit enhanced glucosyltransferase activity were cloned, expressed and characterized experimentally. The predicted GTB mutants, Ser185Asn and Ser185Cys, exhibited 4.3- and 4.8-fold elevations in k(cat)/K-m for UDP-Glc relative to that of wild-type enzyme.
机译:糖基转移酶是一类广泛多样的酶,涵盖所有测序基因组的1%。它们催化单糖从活化的供体如糖核苷酸到受体分子的转移。尽管糖基转移酶的主要序列几乎没有同源性,但是对糖基转移酶的X射线结构研究显示存在两个主要折叠,并且糖供体相对于折叠的取向是高度保守的。似乎通过改变单糖部分周围的氨基酸而不改变核苷酸部分的方向,糖基转移酶已经发展了对供体糖的多样化特异性。在这项研究中,我们通过使用称为Epimer倾向指数(EPI)的新型经验模型设计了具有改变的供体特异性的新糖基转移酶。使用蛋白质数据库中的221种碳水化合物-蛋白质复合物结构构建EPI,复合物中包含半乳糖或葡萄糖。合成糖基转移酶GTB的血液B型,半乳糖基转移酶是我们的目标酶。设计,展示和表征了两个设计成具有增强的葡糖基转移酶活性的GTB突变体。相对于野生型酶,预测的GTB突变体Ser185Asn和Ser185Cys的UDP-Glc的k(cat)/ K-m升高4.3和4.8倍。

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