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通过 O-抗原连接酶附着在气单胞菌表面的葡聚糖代表了获得 UDP-葡萄糖的一种新方法。

Aeromonas surface glucan attached through the O-antigen ligase represents a new way to obtain UDP-glucose.

机构信息

Departamento de Microbiología, Facultad de Biología, Universidad de Barcelona, Diagonal, Barcelona, Spain.

出版信息

PLoS One. 2012;7(5):e35707. doi: 10.1371/journal.pone.0035707. Epub 2012 May 1.

Abstract

We previously reported that A. hydrophila GalU mutants were still able to produce UDP-glucose introduced as a glucose residue in their lipopolysaccharide core. In this study, we found the unique origin of this UDP-glucose from a branched α-glucan surface polysaccharide. This glucan, surface attached through the O-antigen ligase (WaaL), is common to the mesophilic Aeromonas strains tested. The Aeromonas glucan is produced by the action of the glycogen synthase (GlgA) and the UDP-Glc pyrophosphorylase (GlgC), the latter wrongly indicated as an ADP-Glc pyrophosphorylase in the Aeromonas genomes available. The Aeromonas glycogen synthase is able to react with UDP or ADP-glucose, which is not the case of E. coli glycogen synthase only reacting with ADP-glucose. The Aeromonas surface glucan has a role enhancing biofilm formation. Finally, for the first time to our knowledge, a clear preference on behalf of bacterial survival and pathogenesis is observed when choosing to produce one or other surface saccharide molecules to produce (lipopolysaccharide core or glucan).

摘要

我们之前曾报道过,水生嗜水气单胞菌 GalU 突变体仍能在其脂多糖核心中引入葡萄糖残基来产生 UDP-葡萄糖。在这项研究中,我们发现这种 UDP-葡萄糖的独特来源是一种支链α-葡聚糖表面多糖。这种通过 O-抗原连接酶(WaaL)附着在表面的葡聚糖存在于我们测试的所有嗜温性气单胞菌菌株中。气单胞菌葡聚糖是由糖原合酶(GlgA)和 UDP-Glc 焦磷酸化酶(GlgC)作用产生的,后者在现有的气单胞菌基因组中被错误地标注为 ADP-Glc 焦磷酸化酶。气单胞菌糖原合酶能够与 UDP 或 ADP-葡萄糖反应,而大肠杆菌糖原合酶仅能与 ADP-葡萄糖反应。气单胞菌表面葡聚糖具有增强生物膜形成的作用。最后,据我们所知,这是首次观察到在选择产生一种或另一种表面糖分子(脂多糖核心或葡聚糖)时,细菌生存和发病机制的明显偏好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32e6/3341381/2875daa83c43/pone.0035707.g001.jpg

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