首页> 外文OA文献 >Manual Annotation, Transcriptional Analysis, and Protein Expression Studies Reveal Novel Genes in the agl Cluster Responsible for N Glycosylation in the Halophilic Archaeon Haloferax volcanii▿ †
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Manual Annotation, Transcriptional Analysis, and Protein Expression Studies Reveal Novel Genes in the agl Cluster Responsible for N Glycosylation in the Halophilic Archaeon Haloferax volcanii▿ †

机译:人工注释,转录分析和蛋白质表达研究揭示了嗜盐古细菌Haloferax volcanii中负责糖基化N的agl簇中的新基因。

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摘要

While Eukarya, Bacteria, and Archaea are all capable of protein N glycosylation, the archaeal version of this posttranslational modification is the least understood. To redress this imbalance, recent studies of the halophilic archaeon Haloferax volcanii have identified a gene cluster encoding the Agl proteins involved in the assembly and attachment of a pentasaccharide to select Asn residues of the surface layer glycoprotein in this species. However, because the automated tools used for rapid annotation of genome sequences, including that of H. volcanii, are not always accurate, a reannotation of the agl cluster was undertaken in order to discover genes not previously recognized. In the present report, reanalysis of the gene cluster that includes aglB, aglE, aglF, aglG, aglI, and aglJ, which are known components of the H. volcanii protein N-glycosylation machinery, was undertaken. Using computer-based tools or visual inspection, together with transcriptional analysis and protein expression approaches, genes encoding AglP, AglQ, and AglR are now described.
机译:虽然Eukarya,细菌和古细菌都具有蛋白质N糖基化的能力,但对这种翻译后修饰的古细菌版本知之甚少。为了纠正这种不平衡,最近对嗜盐古细菌Haloferax volcanii的研究确定了一个基因簇,该基因簇编码参与五糖组装和附着以选择该物种表层糖蛋白中Asn残基的Ag1蛋白。但是,由于用于快速注释基因组序列(包括火山嗜血菌)的自动化工具并不总是准确的,因此对agl簇进行了重新注释,以发现先前未发现的基因。在本报告中,进行了对基因组的重新分析,其中包括a.glB,aglE,aglF,aglG,aglI和aglJ,这是火山嗜血杆菌蛋白N-糖基化机制的已知组成部分。现在,使用基于计算机的工具或视觉检查,以及转录分析和蛋白质表达方法,描述编码AglP,AglQ和AglR的基因。

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