Mortensen H D, Dupont K, Jespersen L, Willats W G T, Arneborg N
Department of Food Science, The Royal Veterinary and Agricultural University, Frederiksberg C, Denmark.
J Appl Microbiol. 2007 Oct;103(4):1041-7. doi: 10.1111/j.1365-2672.2007.03325.x.
To identify the main amino acids involved in the Flo11p-mediated adhesion of Saccharomyces cerevisiae to the polystyrene surface PolySorp.
Using a combination of phage display and competitive elution revealed that 12-mer peptides of phages from competitive panning with S. cerevisiae FLO11 wild-type (TBR1) cells had a higher consensus than those from competitive panning with S. cerevisiae flo11Delta mutant (TBR5) cells, suggesting that the wild-type cells interact with the plastic surface in a stronger and more similar way than the mutant cells. Tryptophan and proline were more abundant in the peptides of phages from competitive elution with FLO11 cells than in those from competitive elution with flo11Delta cells. Furthermore, two phages with hydrophobic peptides containing 1 or 2 tryptophan, and 3 or 5 proline, residues inhibited the adhesion of FLO11 cells to PolySorp more than a phage with a hydrophobic peptide containing no tryptophan and only two proline residues.
Our results suggest a key role of tryptophan and proline in the hydrophobic interactions between Flo11p on the S. cerevisiae cell surface and the PolySorp surface.
Our study may contribute to the development of novel strategies to limit yeast infections in hospitals and other medical environments.
确定参与酿酒酵母Flo11p介导的酵母与聚苯乙烯表面PolySorp黏附的主要氨基酸。
结合噬菌体展示和竞争性洗脱技术发现,用酿酒酵母FLO11野生型(TBR1)细胞进行竞争性淘选得到的噬菌体12肽的一致性高于用酿酒酵母flo11Δ突变体(TBR5)细胞进行竞争性淘选得到的噬菌体12肽,这表明野生型细胞与塑料表面的相互作用比突变体细胞更强且更相似。与flo11Δ细胞竞争性洗脱得到的噬菌体肽相比,与FLO11细胞竞争性洗脱得到的噬菌体肽中色氨酸和脯氨酸含量更高。此外,两个含有1个或2个色氨酸以及3个或5个脯氨酸残基的疏水肽噬菌体比一个只含两个脯氨酸残基且不含色氨酸的疏水肽噬菌体更能抑制FLO11细胞与PolySorp的黏附。
我们的结果表明色氨酸和脯氨酸在酿酒酵母细胞表面的Flo11p与PolySorp表面的疏水相互作用中起关键作用。
我们的研究可能有助于开发新策略以限制医院及其他医疗环境中的酵母感染。