Miki B L, Poon N H, James A P, Seligy V L
J Bacteriol. 1982 May;150(2):878-89. doi: 10.1128/jb.150.2.878-889.1982.
A model is proposed for the mechanism of flocculation interactions in yeasts in which flocculent cells have a recognition factor which attaches to alpha-mannan sites on other cells. This factor may be governed by the expression of the single, dominant gene FLO1. Isogenic strains of Saccharomyces cerevisiae, differing only at FLO1 and the marker genes ade1 and trp1, were developed to examine the components involved in flocculene. Electron microscopy and concanavalin Aferritin labeling of aggregated cells showed that extensive and intense interactions between cell wall mannan layers mediated cell aggregation. The components of the mannan layer essential for flocculence were Ca2+ ions, alpha-mannan carbohydrates, and proteins. By studying the divalent cation dependence at various pH values and in the presence of competing monovalent cations, flocculation was found to be Ca2+ dependent; however, Mg2+ and Mn2+ ions substituted for Ca2+ under certain conditions. Reversible inhibition of flocculation by concanavalin A and succinylated concanavalin A implicated alpha-branched mannan carbohydrates as one essential component which alone did not determine the strain specificity of flocculence, since nonflocculent strains interacted with and competed for binding sites on flocculent cells. FLO1 may govern the expression of a proteinaceous, lectin-like activity, firmly associated with the cell walls of flocculent cells, which bind to the alpha-mannan carbohydrates of adjoining cells. It was selectively and irreversibly inhibited by proteolysis and reduction of disulfide bonds. The potential of this system as a model for the genetic and biochemical control of cell-cell interactions is discussed.
本文提出了一种酵母絮凝相互作用机制的模型,其中絮凝细胞具有一种识别因子,该因子可附着于其他细胞上的α-甘露聚糖位点。这个因子可能受单一显性基因FLO1的表达调控。构建了仅在FLO1以及标记基因ade1和trp1上存在差异的酿酒酵母同基因菌株,以研究参与絮凝的成分。对聚集细胞进行电子显微镜观察和伴刀豆球蛋白A-铁蛋白标记显示,细胞壁甘露聚糖层之间广泛而强烈的相互作用介导了细胞聚集。絮凝所必需的甘露聚糖层成分是Ca2+离子、α-甘露聚糖碳水化合物和蛋白质。通过研究在不同pH值以及存在竞争性单价阳离子的情况下对二价阳离子的依赖性,发现絮凝依赖于Ca2+;然而,在某些条件下Mg2+和Mn2+离子可替代Ca2+。伴刀豆球蛋白A和琥珀酰化伴刀豆球蛋白A对絮凝的可逆抑制表明,α-分支甘露聚糖碳水化合物是一种必需成分,但仅其自身并不能决定絮凝的菌株特异性,因为非絮凝菌株会与絮凝细胞上的结合位点相互作用并竞争。FLO1可能调控一种与絮凝细胞细胞壁紧密相关的蛋白质样凝集素活性的表达,该活性可与相邻细胞的α-甘露聚糖碳水化合物结合。它可被蛋白水解和二硫键还原选择性且不可逆地抑制。本文还讨论了该系统作为细胞间相互作用遗传和生化控制模型的潜力。