...
首页> 外文期刊>Molecular Microbiology >Identification of genes involved in the biosynthesis and attachment of Methanococcus voltae N-linked glycans: insight into N-linked glycosylation pathways in Archaea
【24h】

Identification of genes involved in the biosynthesis and attachment of Methanococcus voltae N-linked glycans: insight into N-linked glycosylation pathways in Archaea

机译:鉴定参与甲烷氧化球菌N连锁聚糖生物合成和附着的基因:深入了解古细菌中N连锁糖基化途径

获取原文
获取原文并翻译 | 示例
           

摘要

N-linked glycosylation is recognized as an important post-translational modification across all three domains of life. However, the understanding of the genetic pathways for the assembly and attachment of N-linked glycans in eukaryotic and bacterial systems far outweighs the knowledge of comparable processes in Archaea. The recent characterization of a novel trisaccharide [beta-ManpNAcA6Thr-(1-4)-beta-GlcpNAc3NAcA-(1-3)-beta-GlcpNAc] N-linked to asparagine residues in Methanococcus voltae flagellin and S-layer proteins affords new opportunities to investigate N-linked glycosylation pathways in Archaea. In this contribution, the insertional inactivation of several candidate genes within the M. voltae genome and their resulting effects on flagellin and S-layer glycosylation are reported. Two of the candidate genes were shown to have effects on flagellin and S-layer protein molecular mass and N-linked glycan structure. Further examination revealed inactivation of either of these two genes also had effects on flagella assembly. These genes, designated agl ((c) under bar rchaeal (gl) under bar ycosylation) genes, include a glycosyl transferase (aglA) involved in the attachment of the terminal sugar to the glycan and an STT3 oligosaccharyl transferase homologue (aglB) involved in the transfer of the complete glycan to the flagellin and S-layer proteins. These findings document the first experimental evidence for genes involved in any glycosylation process within the domain Archaea.
机译:N-联糖基化被认为是生命所有三个域中的重要翻译后修饰。但是,对真核生物和细菌系统中N-连接聚糖组装和附着的遗传途径的了解远远超过了古细菌中类似过程的知识。 N新型连接到伏打甲烷球菌鞭毛蛋白和S层蛋白中的天冬酰胺残基的新型三糖[β-ManpNAcA6Thr-(1-4)-β-GlcpNAc3NAcA-(1-3)-β-GlcpNAc]的表征提供了新的机会调查古细菌中的N-联糖基化途径。在这一贡献中,报道了伏地芽孢杆菌基因组内几个候选基因的插入失活及其对鞭毛蛋白和S层糖基化的影响。已显示两个候选基因对鞭毛蛋白和S层蛋白分子量以及N-连接聚糖结构有影响。进一步的检查表明,这两个基因之一的失活对鞭毛组装也有影响。这些基因被指定为agl(在bar糖基化下位于bar rchaeal(gl)下的(c))基因,包括参与末端糖与聚糖的连接的糖基转移酶(aglA)和参与该末端糖的STT3寡糖基转移酶同源物(aglB)将完整的聚糖转移至鞭毛蛋白和S层蛋白。这些发现记录了有关古细菌域内任何糖基化过程相关基因的第一个实验证据。

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