Laboratory of Structural Biology, Department of Bioengineering Sciences, Vrije Universiteit Brussel, Brussels, Belgium.
FEMS Yeast Res. 2012 Feb;12(1):78-87. doi: 10.1111/j.1567-1364.2011.00766.x. Epub 2011 Dec 22.
The expression of the Flo11 flocculin in Saccharomyces cerevisiae offers the cell a wide range of phenotypes, depending on the strain and the environmental conditions. The most important are pseudohyphae development, invasive growth and flocculation. The mechanism of cellular adhesion mediated by Flo11p is not well understood. Therefore, the N-terminal domain of Flo11p was purified and studied. Although its amino acid sequence shows less similarity with the other flocculins, Flo11p belongs to the flocculin family. However, the N-terminal domain contains the 'Flo11-domain' (PF10181), but not the mannose-binding PA14 domain, which is present in the other flocculins (Flo1p, Flo5p, Flo9p and Flo10p). Structural and binding properties of the N-terminal domain of Flo11p were studied. It is shown that this domain is O-glycosylated and is structurally composed mainly of β-sheets, which is typical for the members of the flocculin family. Furthermore, fluorescence spectroscopy binding studies revealed that N-Flo11p does not bind mannose, which is in contrast to the other Flo proteins. However, surface plasmon resonance analysis showed that N-Flo11p self-interacts and explains the cell-cell interaction capacity of FLO11-expressing cells.
在酿酒酵母中表达 Flo11 絮凝素赋予细胞多种表型,具体取决于菌株和环境条件。其中最重要的是假菌丝发育、侵袭性生长和絮凝。Flo11p 介导的细胞黏附机制尚未得到很好的理解。因此,纯化并研究了 Flo11p 的 N 端结构域。尽管其氨基酸序列与其他絮凝素的相似性较低,但 Flo11p 属于絮凝素家族。然而,N 端结构域包含“Flo11 结构域”(PF10181),但不包含其他絮凝素(Flo1p、Flo5p、Flo9p 和 Flo10p)中存在的甘露糖结合的 PA14 结构域。研究了 Flo11p N 端结构域的结构和结合特性。结果表明,该结构域发生 O-糖基化,结构主要由β-折叠组成,这是絮凝素家族成员的典型特征。此外,荧光光谱结合研究表明,N-Flo11p 不结合甘露糖,这与其他 Flo 蛋白形成对比。然而,表面等离子体共振分析表明,N-Flo11p 发生自相互作用,这解释了表达 FLO11 的细胞的细胞间相互作用能力。