首页> 外文期刊>Organic & biomolecular chemistry >The neomycin biosynthetic gene cluster of Streptomyces fradiae NCIMB 8233: genetic and biochemical evidence for the roles of two glycosyltransferases and a deacetylase
【24h】

The neomycin biosynthetic gene cluster of Streptomyces fradiae NCIMB 8233: genetic and biochemical evidence for the roles of two glycosyltransferases and a deacetylase

机译:链霉菌NCIMB 8233的新霉素生物合成基因簇:两种糖基转移酶和脱乙酰酶作用的遗传和生化证据

获取原文
获取原文并翻译 | 示例
           

摘要

An efficient protocol has been developed for the genetic manipulation of Streptomyces fradiae NCIMB 8233, which produces the 2-deoxystreptamine (2-DOS)-containing aminoglycoside antibiotic neomycin. This has allowed the in vivo analysis of the respective roles of the glycosyltransferases Neo8 and Neol5, and of the deacetylase Neol6 in neomycin biosynthesis. Specific deletion of each of the neo8, neol5 and neol6 genes confirmed that they are all essential for neomycin biosynthesis. The pattern of metabolites produced by feeding putative pathway intermediates to these mutants provided unambiguous support for a scheme in which Neo8 and Neo15, whose three-dimensional structures are predicted to be highly similar, have distinct roles: Neo8 catalyses transfer of N-acetylglucosamine to 2-DOS early in the pathway, while Neo15 catalyses transfer of the same aminosugar to ribostamycin later in the pathway. The in vitro substrate specificity of Neo15, purified from recombinant Escherichia coli, was fully consistent with these findings. The in vitro activity of Neo16, the only deacetylase so far recognised in the neo gene cluster, showed that it is capable of acting in tandem with both Neo8 and Neo15 as previously proposed. However, the deacetylation of N-acetylglucosaminylribostamycin was still observed in a strain deleted of the neol6 gene and fed with suitable pathway precursors, providing evidence for the existence of a second enzyme in S. fradiae with this activity.
机译:已经开发了一种有效的方法来进行弗拉链霉菌NCIMB 8233的基因操作,该方法可产生含2-脱氧链胺胺(2-DOS)的氨基糖苷类抗生素新霉素。这允许在体内分析糖基转移酶Neo8和Neol5以及脱乙酰酶Neol6在新霉素生物合成中的各自作用。 neo8,neo15和neol6每个基因的特异性缺失证实它们都是新霉素生物合成所必需的。通过将推定的途径中间体馈入这些突变体而产生的代谢产物模式为以下方案提供了明确的支持:在该方案中,三维结构被预测高度相似的Neo8和Neo15具有不同的作用:Neo8催化N-乙酰氨基葡萄糖向2的转移。 -DOS在该途径的早期,而Neo15则在该途径的后期催化同一氨基糖向核糖霉素的转移。从重组大肠杆菌中纯化的Neo15的体外底物特异性与这些发现完全一致。 Neo16的体外活性是迄今为止在neo基因簇中公认的唯一脱乙酰基酶,表明它能够与Neo8和Neo15协同作用,如前所述。然而,在缺失neo16基因并喂入合适的途径前体的菌株中,仍观察到N-乙酰氨基葡萄糖氨基核糖葡萄球菌素的脱乙酰基作用,这提供了在苦参中存在这种活性的第二种酶的证据。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号