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Isolation and Characterization of Biofilm Formation-Defective Mutants of Staphylococcus aureus

机译:金黄色葡萄球菌生物膜形成缺陷突变体的分离与鉴定

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摘要

Staphylococcus aureus produces biofilm and this mode of colonization facilitates infections that are often difficult to treat and engender high morbidity and mortality. We have exploited bacteriophage Mu transposition methods to create an insertional mutant library in a highly biofilm-forming S. aureus clinical isolate. Our screen identified 38 insertions in 23 distinct genes together with one intergenic region that significantly reduced biofilm formation. Nineteen insertions were mapped in loci not previously known to affect biofilm in this organism. These include insertions in codY, srrA, mgrA, and fmtA, a putative DEAD-box helicase, two members of the zinc-metallo-β lactamase/β-CASP family, and a hypothetical protein with a GGDEF motif. Fifteen insertions occurred in the icaADBC operon, which produces intercellular adhesion antigen (PIA) and is important for biofilm formation in many strains of S. aureus and Staphylococcus epidermidis. Obtaining a high proportion of independent Em-Mu disruptions in icaADBC demonstrated both the importance of PIA for biofilm formation in this clinical strain and the strong validation of the screening procedure that concomitantly uncovered additional mutants. All non-ica mutants were further analyzed by immunoblotting and biochemical fractionation for perturbation of PIA and wall teichoic acid. PIA levels were diminished in the majority of non-ica insertional mutants. Three mutant strains were chosen and were functionally complemented for restored biofilm formation by transformation with plasmids carrying the cloned wild-type gene under the control of a xylose-inducible promoter. This is a comprehensive collection of biofilm-defective mutants that underscores the multifactorial genetic program underlying the establishment of biofilm in this insidious pathogen.
机译:金黄色葡萄球菌产生生物膜,这种定殖模式促进了通常难以治疗的感染,并导致较高的发病率和死亡率。我们已经利用噬菌体Mu转座方法在高度生物膜形成的金黄色葡萄球菌临床分离株中创建插入突变文库。我们的筛选确定了23个不同基因中的38个插入片段以及一个明显减少生物膜形成的基因间区域。在以前不知道会影响该生物体生物膜的基因座中定位了19个插入片段。这些包括插入codY,srrA,mgrA和fmtA,推定的DEAD-box解旋酶,锌-金属-β内酰胺酶/β-CASP家族的两个成员以及具有GGDEF主题的假设蛋白。 icaADBC操纵子发生15次插入,产生细胞间粘附抗原(PIA),对于许多金黄色葡萄球菌和表皮葡萄球菌菌株的生物膜形成非常重要。在icaADBC中获得高比例的独立Em-Mu破坏证明了PIA对于该临床菌株中生物膜形成的重要性以及对筛选过程的强有力验证,从而发现了其他突变体。通过免疫印迹和生化分级分离法进一步分析了所有非ica突变体,以分析PIA和壁骨ei酸的微扰。在大多数非ica插入突变体中,PIA水平降低。选择三种突变株,并通过在木糖诱导型启动子的控制下用携带克隆的野生型基因的质粒转化,功能上互补以恢复生物膜的形成。这是生物膜缺陷型突变体的全面集合,强调了在这种隐性病原体中建立生物膜的基础的多因素遗传程序。

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