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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Structure-based phylogeny of polyene macrolide antibiotic glycosyltransferases
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Structure-based phylogeny of polyene macrolide antibiotic glycosyltransferases

机译:多烯大环内酯类抗生素糖基转移酶的基于结构的系统发育

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摘要

Antibiotic glycosyltransferases (AGts) attach unusual deoxy-sugars to aglycons so antibiotics can exert function. It has been reported that polyene macrolide (PEM) AGts have different evolutionary origin when compared with other polyketide AGts, and our previous analysis have suggested that they could be results of horizontal gene transfer (HGT) from eukaryotes. In this paper, we compared the structures of PEM AGts with structures of eukaryotes and other AGts, and then built models of the representative PEM AGts and GT-1 glycosyltransferases. We also constructed the Neighbor-Joining (NJ) trees based on the normalized Root Mean Square (RMS) distance, the Bayesian tree guided by structural alignments, and carried out analysis on several key conserved residues in PEM AGts. The NJ tree showed a close relationship between PEM AGts and eukaryotic glycosyltransferases, and Bayesian tree further supported their affinity with UDP-glucuronosyltransferases (UGTs). Analysis on key conserved residues showed that PEM AGts may have similar interaction mechanism such as in the formation of hydrogen bonds as eukaryotic glycosyltransferases. Using structure-based phylogenetic approaches, this study further supported that PEM AGts were the result of HGT between prokaryotes and eukaryotes.
机译:抗生素糖基转移酶(AGts)将异常的脱氧糖附着到糖苷配基上,因此抗生素可以发挥功能。据报道,与其他聚酮化合物AGts相比,多烯大环内酯(PEM)AGts具有不同的进化起源,而我们先前的分析表明它们可能是真核生物水平基因转移(HGT)的结果。在本文中,我们将PEM AGts的结构与真核生物和其他AGts的结构进行了比较,然后建立了具有代表性的PEM AGts和GT-1糖基转移酶的模型。我们还基于归一化均方根(RMS)距离,基于结构比对的贝叶斯树构造了Neighbor-Joining(NJ)树,并对PEM AGts中的几个关键保守残基进行了分析。 NJ树显示PEM AGts与真核糖基转移酶之间有密切的关系,贝叶斯树进一步支持了它们与UDP-葡萄糖醛酸转移酶(UGT)的亲和力。对关键保守残基的分析表明,PEM AGts可能具有类似的相互作用机制,例如在真核糖基转移酶中形成氢键。使用基于结构的系统发育方法,该研究进一步支持PEM AGts是原核生物和真核生物之间HGT的结果。

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