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多重耐药铜绿假单胞菌中PstS的结构-功能方面

Structure-function aspects of PstS in multi-drug-resistant Pseudomonas aeruginosa.

作者信息

Zaborina Olga, Holbrook Christopher, Chen Yimei, Long Jason, Zaborin Alexander, Morozova Irina, Fernandez Hoylan, Wang Yingmin, Turner Jerrold R, Alverdy John C

机构信息

Department of Surgery, Pritzker School of Medicine, University of Chicago, Chicago, Illinois, United States of America.

出版信息

PLoS Pathog. 2008 Feb 8;4(2):e43. doi: 10.1371/journal.ppat.0040043.

Abstract

The increasing prevalence of multi-drug-resistant (MDR) strains of Pseudomonas aeruginosa among critically ill humans is of significant concern. In the current study, we show that MDR clinical isolates of P. aeruginosa representing three distinct genotypes that display high virulence against intestinal epithelial cells, form novel appendage-like structures on their cell surfaces. These appendages contain PstS, an extracellular phosphate binding protein. Using anti-PstS antibodies, we determined that the PstS-rich appendages in MDR strains are involved in adherence to and disruption of the integrity of cultured intestinal epithelial cell monolayers. The outer surface-expressed PstS protein was also identified to be present in P. aeruginosa MPAO1, although to a lesser degree, and its role in conferring an adhesive and barrier disruptive phenotype against intestinal epithelial cells was confirmed using an isogenic DeltaPstS mutant. Formation of the PstS rich appendages was induced during phosphate limitation and completely suppressed in phosphate-rich media. Injection of MDR strains directly into the intestinal tract of surgically injured mice, a known model of phosphate limitation, caused high mortality rates (60%-100%). Repletion of intestinal phosphate in this model completely prevented mortality. Finally, significantly less outer surface PstS was observed in the MPAO1 mutant DeltaHxcR thus establishing a role for the alternative type II secretion system Hxc in outer surface PstS expression. Gene expression analysis performed by RT-PCR confirmed this finding and further demonstrated abundant expression of pstS analogous to pa5369, pstS analogous to pa0688/pa14-55410, and hxcX in MDR strains. Taken together, these studies provide evidence that outer surface PstS expression confers a highly virulent phenotype of MDR isolates against the intestinal epithelium that alters their adhesive and barrier disrupting properties against the intestinal epithelium.

摘要

多重耐药铜绿假单胞菌在重症患者中的患病率不断上升,这引起了人们的极大关注。在本研究中,我们发现,代表三种不同基因型的多重耐药铜绿假单胞菌临床分离株对肠道上皮细胞具有高毒力,且在其细胞表面形成了新型的附属物样结构。这些附属物含有PstS,一种细胞外磷酸盐结合蛋白。使用抗PstS抗体,我们确定多重耐药菌株中富含PstS的附属物参与了对培养的肠道上皮细胞单层的黏附以及对其完整性的破坏。外表面表达的PstS蛋白在铜绿假单胞菌MPAO1中也有发现,尽管程度较低,并且使用同基因的DeltaPstS突变体证实了其在赋予针对肠道上皮细胞的黏附及屏障破坏表型方面的作用。在磷酸盐限制条件下诱导形成富含PstS的附属物,而在富含磷酸盐的培养基中则完全受到抑制。将多重耐药菌株直接注射到手术损伤小鼠的肠道中(这是一种已知的磷酸盐限制模型),导致了高死亡率(60%-100%)。在该模型中补充肠道磷酸盐可完全预防死亡。最后,在MPAO1突变体DeltaHxcR中观察到外表面PstS显著减少,从而确定了替代型II型分泌系统Hxc在外表面PstS表达中的作用。通过RT-PCR进行的基因表达分析证实了这一发现,并进一步证明了多重耐药菌株中与pa5369类似的pstS、与pa0688/pa14-55410类似的pstS以及hxcX的丰富表达。综上所述,这些研究提供了证据,表明外表面PstS表达赋予了多重耐药分离株针对肠道上皮的高毒力表型,改变了它们对肠道上皮的黏附及屏障破坏特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9861/2323636/54af62865c4f/ppat.0040043.g001.jpg

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