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酿酒酵母中Flo蛋白家族介导的黏附的表型多样性。

Phenotypic diversity of Flo protein family-mediated adhesion in Saccharomyces cerevisiae.

作者信息

Van Mulders Sebastiaan E, Christianen Els, Saerens Sofie M G, Daenen Luk, Verbelen Pieter J, Willaert Ronnie, Verstrepen Kevin J, Delvaux Freddy R

机构信息

Department of Microbial and Molecular Systems, Centre for Malting and Brewing Science, Faculty of Bioscience Engineering, Katholieke Universiteit Leuven, Leuven, Heverlee, Belgium.

出版信息

FEMS Yeast Res. 2009 Mar;9(2):178-90. doi: 10.1111/j.1567-1364.2008.00462.x. Epub 2009 Dec 11.

Abstract

The Saccharomyces cerevisiae genome encodes a Flo (flocculin) adhesin family responsible for cell-cell and cell-surface adherence. In commonly used laboratory strains, these FLO genes are transcriptionally silent, because of a nonsense mutation in the transcriptional activator FLO8, concealing the potential phenotypic diversity of fungal adhesion. Here, we analyse the distinct adhesion characteristics conferred by each of the five FLO genes in the S288C strain and compare these phenotypes with a strain containing a functional copy of FLO8. Our results show that four FLO genes confer flocculation, but with divergent characteristics such as binding strength, carbohydrate recognition and floc size. Adhesion to agar surfaces, on the other hand, largely depended on two adhesins, Flo10 and Flo11. Expression of any FLO gene caused a significant increase in cell wall hydrophobicity. Nevertheless, the capacity to adhere to plastic surfaces, which is believed to depend on hydrophobic interactions, differed strongly between the adhesins. Restoring Flo8 yielded both flocculation and cell-surface adherence, such as invasive growth, a phenotype not observed when any of the single FLO genes was overexpressed. Taken together, this study reveals how S. cerevisiae carries a small reservoir of FLO genes that allows cells to display a wide variety of adhesive properties.

摘要

酿酒酵母基因组编码一个负责细胞间和细胞表面黏附的絮凝素(Flo)黏附素家族。在常用的实验室菌株中,由于转录激活因子FLO8中的无义突变,这些FLO基因在转录上是沉默的,这掩盖了真菌黏附潜在的表型多样性。在这里,我们分析了S288C菌株中五个FLO基因各自赋予的独特黏附特性,并将这些表型与含有功能性FLO8拷贝的菌株进行比较。我们的结果表明,四个FLO基因赋予絮凝作用,但具有不同的特性,如结合强度、碳水化合物识别和絮凝物大小。另一方面,对琼脂表面的黏附很大程度上取决于两种黏附素,Flo10和Flo11。任何FLO基因的表达都会导致细胞壁疏水性显著增加。然而,黏附素之间在依赖疏水相互作用的对塑料表面的黏附能力上存在很大差异。恢复Flo8会产生絮凝和细胞表面黏附,如侵袭性生长,这是任何单个FLO基因过表达时未观察到的表型。综上所述,这项研究揭示了酿酒酵母如何携带一小部分FLO基因库,使细胞能够表现出各种各样的黏附特性。

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