首页> 美国卫生研究院文献>Journal of Bacteriology >The pgaABCD Locus of Acinetobacter baumannii Encodes the Production of Poly-β-1-6-N-Acetylglucosamine Which Is Critical for Biofilm Formation
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The pgaABCD Locus of Acinetobacter baumannii Encodes the Production of Poly-β-1-6-N-Acetylglucosamine Which Is Critical for Biofilm Formation

机译:鲍曼不动杆菌的pgaABCD基因座编码聚-β-1-6-N-乙酰氨基葡萄糖的生产这对生物膜的形成至关重要

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摘要

We found that Acinetobacter baumannii contains a pgaABCD locus that encodes proteins that synthesize cell-associated poly-β-(1-6)-N-acetylglucosamine (PNAG). Both a mutant with an in-frame deletion of the pga locus (S1Δpga) and a transcomplemented strain (S1Δpga-c) of A. baumannii were constructed, and the PNAG production by these strains was compared using an immunoblot assay. Deleting the pga locus resulted in an A. baumannii strain without PNAG, and transcomplementation of the S1Δpga strain with the pgaABCD genes fully restored the wild-type PNAG phenotype. Heterologous expression of the A. baumannii pga locus in Escherichia coli led to synthesis of significant amounts of PNAG, while no polysaccharide was detected in E. coli cells harboring an empty vector. Nuclear magnetic resonance analysis of the extracellular polysaccharide material isolated from A. baumannii confirmed that it was PNAG, but notably only 60% of the glucosamine amino groups were acetylated. PCR analysis indicated that all 30 clinical A. baumannii isolates examined had the pga genes, and immunoblot assays indicated that 14 of the 30 strains strongly produced PNAG, 14 of the strains moderately to weakly produced PNAG, and 2 strains appeared to not produce PNAG. Deletion of the pga locus led to loss of the strong biofilm phenotype, which was restored by complementation. Confocal laser scanning microscopy studies combined with COMSTAT analysis demonstrated that the biovolume, mean thickness, and maximum thickness of 16-h and 48-h-old biofilms formed by wild-type and pga-complemented A. baumannii strains were significantly greater than the biovolume, mean thickness, and maximum thickness of 16-h and 48-h-old biofilms formed by the S1Δpga mutant strain. Biofilm-dependent production of PNAG could be an important virulence factor for this emerging pathogen that has few known virulence factors.
机译:我们发现鲍曼不动杆菌包含pgaABCD基因座,该基因座编码合成与细胞相关的聚β-(1-6)-N-乙酰氨基葡萄糖(PNAG)的蛋白质。构建了pga基因座(S1Δpga)的读框内缺失的突变体和鲍曼不动杆菌的反式互补菌株(S1Δpga-c),并使用免疫印迹测定法比较了这些菌株的PNAG产生。删除pga基因座导致没有PNAG的鲍曼不动杆菌菌株,并且用pgaABCD基因对S1Δpga菌株进行反式互补完全恢复了野生型PNAG表型。鲍曼不动杆菌pga基因座在大肠杆菌中的异源表达导致大量PNAG的合成,而在带有空载体的大肠杆菌细胞中未检测到多糖。从鲍曼不动杆菌分离的细胞外多糖材料的核磁共振分析证实它是PNAG,但值得注意的是只有60%的氨基葡萄糖氨基被乙酰化。 PCR分析表明,所检查的所有30株临床鲍曼不动杆菌都具有 pga 基因,免疫印迹分析表明,这30株菌株中有14株强烈产生PNAG,14株中度到弱产生PNAG,还有2株菌株似乎不产生PNAG。 pga 基因座的缺失导致丧失强大的生物膜表型,并通过互补作用得以恢复。共焦激光扫描显微镜研究结合COMSTAT分析表明,野生型和 pga 互补的形成的16小时和48小时的生物膜的生物体积,平均厚度和最大厚度一个。鲍曼氏菌菌株明显大于由S1Δ pga 突变菌株形成的16小时和48小时的生物膜的生物体积,平均厚度和最大厚度。 PNAG的生物膜依赖性生产可能是这种新兴病原体的重要毒力因子,这种病原体几乎没有已知的毒力因子。

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