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金黄色葡萄球菌纽曼菌株中SaeRS依赖性对生物膜形成的抑制作用

SaeRS-dependent inhibition of biofilm formation in Staphylococcus aureus Newman.

作者信息

Cue David, Junecko Jennifer M, Lei Mei G, Blevins Jon S, Smeltzer Mark S, Lee Chia Y

机构信息

Department of Microbiology and Immunology, University of Arkansas for Medical Sciences, Little Rock, AR, 72205, United States of America.

出版信息

PLoS One. 2015 Apr 8;10(4):e0123027. doi: 10.1371/journal.pone.0123027. eCollection 2015.

Abstract

The SaeRS two-component regulatory system of Staphylococcus aureus is known to affect the expression of many genes. The SaeS protein is the histidine kinase responsible for phosphorylation of the response regulator SaeR. In S. aureus Newman, the sae system is constitutively expressed due to a point mutation in saeS, relative to other S. aureus strains, which results in substitution of proline for leucine at amino acid 18. Strain Newman is unable to form a robust biofilm and we report here that the biofilm-deficient phenotype is due to the saeSP allele. Replacement of the Newman saeSP with saeSL, or deletion of saeRS, resulted in a biofilm-proficient phenotype. Newman culture supernatants were observed to inhibit biofilm formation by other S. aureus strains, but did not affect biofilm formation by S. epidermidis. Culture supernatants of Newman saeSL or Newman ΔsaeRS had no significant effect on biofilm formation. The inhibitory factor was inactivated by incubation with proteinase K, but survived heating, indicating that the inhibitory protein is heat-stable. The inhibitory protein was found to affect the attachment step in biofilm formation, but had no effect on preformed biofilms. Replacement of saeSL with saeSP in the biofilm-proficient S. aureus USA300 FPR3757 resulted in the loss of biofilm formation. Culture supernatants of USA300 FPR3757 saeSP, did not inhibit biofilm formation by other staphylococci, suggesting that the inhibitory factor is produced but not secreted in the mutant strain. A number of biochemical methods were utilized to isolate the inhibitory protein. Although a number of candidate proteins were identified, none were found to be the actual inhibitor. In an effort to reduce the number of potential inhibitory genes, RNA-Seq analyses were done with wild-type strain Newman and the saeSL and ΔsaeRS mutants. RNA-Seq results indicated that sae regulates many genes that may affect biofilm formation by Newman.

摘要

已知金黄色葡萄球菌的双组分调控系统SaeRS会影响许多基因的表达。SaeS蛋白是负责响应调节因子SaeR磷酸化的组氨酸激酶。在金黄色葡萄球菌纽曼菌株中,相对于其他金黄色葡萄球菌菌株,sae系统由于saeS中的一个点突变而组成型表达,该突变导致第18位氨基酸处的亮氨酸被脯氨酸取代。纽曼菌株无法形成坚固的生物膜,我们在此报告生物膜缺陷表型是由于saeSP等位基因所致。用saeSL替换纽曼菌株的saeSP,或缺失saeRS,会导致生物膜形成能力正常的表型。观察到纽曼菌株的培养上清液可抑制其他金黄色葡萄球菌菌株的生物膜形成,但不影响表皮葡萄球菌的生物膜形成。纽曼saeSL或纽曼ΔsaeRS的培养上清液对生物膜形成没有显著影响。抑制因子经蛋白酶K孵育后失活,但加热后仍存活,表明抑制蛋白具有热稳定性。发现抑制蛋白会影响生物膜形成中的附着步骤,但对预先形成的生物膜没有影响。在生物膜形成能力正常的金黄色葡萄球菌USA300 FPR3757中,用saeSP替换saeSL会导致生物膜形成能力丧失。USA300 FPR3757 saeSP的培养上清液不抑制其他葡萄球菌的生物膜形成,这表明突变菌株产生了抑制因子但未分泌。利用多种生化方法分离抑制蛋白。尽管鉴定出了许多候选蛋白,但没有一个被发现是实际的抑制剂。为了减少潜在抑制基因的数量,对野生型菌株纽曼以及saeSL和ΔsaeRS突变体进行了RNA测序分析。RNA测序结果表明,sae调控许多可能影响纽曼菌株生物膜形成的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/699f/4390220/c584a23dcbd0/pone.0123027.g001.jpg

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