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鲍曼不动杆菌的K19荚膜多糖是通过一个小基因组岛中编码的Wzy聚合酶产生的,而不是通过KL19荚膜基因簇产生。

K19 capsular polysaccharide of Acinetobacter baumannii is produced via a Wzy polymerase encoded in a small genomic island rather than the KL19 capsule gene cluster.

作者信息

Kenyon Johanna J, Shneider Mikhail M, Senchenkova Sofya N, Shashkov Alexander S, Siniagina Maria N, Malanin Sergey Y, Popova Anastasiya V, Miroshnikov Konstantin A, Hall Ruth M, Knirel Yuriy A

机构信息

Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Australia.

School of Molecular Bioscience, University of Sydney, Sydney, Australia.

出版信息

Microbiology (Reading). 2016 Aug;162(8):1479-1489. doi: 10.1099/mic.0.000313. Epub 2016 May 25.

Abstract

Polymerization of the oligosaccharides (K units) of complex capsular polysaccharides (CPSs) requires a Wzy polymerase, which is usually encoded in the gene cluster that directs K unit synthesis. Here, a gene cluster at the Acinetobacter K locus (KL) that lacks a wzy gene, KL19, was found in Acinetobacter baumannii ST111 isolates 28 and RBH2 recovered from hospitals in the Russian Federation and Australia, respectively. However, these isolates produced long-chain capsule, and a wzy gene was found in a 6.1 kb genomic island (GI) located adjacent to the cpn60 gene. The GI also includes an acetyltransferase gene, atr25, which is interrupted by an insertion sequence (IS) in RBH2. The capsule structure from both strains was →3)-α-d-GalpNAc-(1→4)-α-d-GalpNAcA-(1→3)-β-d-QuipNAc4NAc-(1→, determined using NMR spectroscopy. Biosynthesis of the K unit was inferred to be initiated with QuiNAc4NAc, and hence the Wzy forms the β-(1→3) linkage between QuipNAc4NAc and GalpNAc. The GalpNAc residue is 6-O-acetylated in isolate 28 only, showing that atr25 is responsible for this acetylation. The same GI with or without an IS in atr25 was found in draft genomes of other KL19 isolates, as well as ones carrying a closely related CPS gene cluster, KL39, which differs from KL19 only in a gene for an acyltransferase in the QuiNAc4NR synthesis pathway. Isolates carrying a KL1 variant with the wzy and atr genes each interrupted by an ISAba125 also have this GI. To our knowledge, this study is the first report of genes involved in capsule biosynthesis normally found at the KL located elsewhere in A. baumannii genomes.

摘要

复杂荚膜多糖(CPSs)的寡糖(K单位)聚合需要Wzy聚合酶,该酶通常编码于指导K单位合成的基因簇中。在此,在分别从俄罗斯联邦和澳大利亚医院分离出的鲍曼不动杆菌ST111菌株28和RBH2中,发现了位于不动杆菌K位点(KL)的一个缺乏wzy基因的基因簇KL19。然而,这些分离株产生长链荚膜,并且在与cpn60基因相邻的一个6.1 kb基因组岛(GI)中发现了一个wzy基因。该GI还包括一个乙酰转移酶基因atr25,在RBH2中该基因被一个插入序列(IS)中断。使用核磁共振光谱法确定,这两种菌株的荚膜结构均为 →3)-α-d-氨基半乳糖-(1→4)-α-d-氨基半乳糖醛酸-(1→3)-β-d-4-乙酰氨基-4,6-二脱氧喹诺糖-(1→。推断K单位的生物合成起始于4-乙酰氨基-4,6-二脱氧喹诺糖,因此Wzy在4-乙酰氨基-4,6-二脱氧喹诺糖和氨基半乳糖之间形成β-(1→3)连接。仅在菌株28中,氨基半乳糖残基被6-O-乙酰化,表明atr25负责这种乙酰化。在其他KL19分离株以及携带密切相关的CPS基因簇KL39的分离株的草图基因组中,发现了相同的带有或不带有atr25中IS的GI,KL39与KL19的不同之处仅在于4-乙酰氨基-4-脱氧-L-岩藻糖合成途径中的一个酰基转移酶基因。携带KL1变体的分离株,其wzy和atr基因均被ISAba125中断,也具有此GI。据我们所知,本研究是关于通常位于鲍曼不动杆菌基因组其他位置的KL处参与荚膜生物合成的基因的首次报道。

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