Department of Biotechnology, Chemistry and Environmental Engineering, Aalborg University, Aalborg, Denmark.
Microbiologyopen. 2013 Jun;2(3):365-82. doi: 10.1002/mbo3.81. Epub 2013 Mar 18.
The fap operon, encoding functional amyloids in Pseudomonas (Fap), is present in most pseudomonads, but so far the expression and importance for biofilm formation has only been investigated for P. fluorescens strain UK4. In this study, we demonstrate the capacity of P. aeruginosa PAO1, P. fluorescens Pf-5, and P. putida F1 to express Fap fibrils, and investigated the effect of Fap expression on aggregation and biofilm formation. The fap operon in all three Pseudomonas species conferred the ability to express Fap fibrils as shown using a recombinant approach. This Fap overexpression consistently resulted in highly aggregative phenotypes and in increased biofilm formation. Detailed biophysical investigations of purified fibrils confirmed FapC as the main fibril monomer and supported the role of FapB as a minor, nucleating constituent as also indicated by bioinformatic analysis. Bioinformatics analysis suggested FapF and FapD as a potential β-barrel membrane pore and protease, respectively. Manipulation of the fap operon showed that FapA affects monomer composition of the final amyloid fibril, and that FapB is an amyloid protein, probably a nucleator for FapC polymerization. Our study highlights the fap operon as a molecular machine for functional amyloid formation.
Fap 操纵子(编码假单胞菌中的功能淀粉样蛋白)存在于大多数假单胞菌中,但迄今为止,其表达及其对生物膜形成的重要性仅在荧光假单胞菌 UK4 菌株中进行了研究。在本研究中,我们证明了铜绿假单胞菌 PAO1、荧光假单胞菌 Pf-5 和恶臭假单胞菌 F1 表达 Fap 原纤维的能力,并研究了 Fap 表达对聚集和生物膜形成的影响。所有三种假单胞菌中的 fap 操纵子赋予了表达 Fap 原纤维的能力,这是通过重组方法证明的。这种 Fap 过表达一致导致高度聚集的表型和增加的生物膜形成。对纯化原纤维的详细生物物理研究证实了 FapC 是主要的原纤维单体,并支持 FapB 作为次要的成核成分的作用,这也被生物信息学分析所表明。生物信息学分析表明 FapF 和 FapD 分别为潜在的β-桶膜孔和蛋白酶。fap 操纵子的操作表明 FapA 影响最终淀粉样纤维的单体组成,并且 FapB 是淀粉样蛋白,可能是 FapC 聚合的成核剂。我们的研究强调了 fap 操纵子作为功能性淀粉样蛋白形成的分子机器。