Douglas Lois M, Li Li, Yang Yang, Dranginis A M
Department of Biological Sciences, St. John's University, 8000 Utopia Parkway, Queens, NY 11439, USA.
Eukaryot Cell. 2007 Dec;6(12):2214-21. doi: 10.1128/EC.00284-06. Epub 2007 Oct 5.
The Flo11/Muc1 flocculin has diverse phenotypic effects. Saccharomyces cerevisiae cells of strain background Sigma1278b require Flo11p to form pseudohyphae, invade agar, adhere to plastic, and develop biofilms, but they do not flocculate. We show that S. cerevisiae var. diastaticus strains, on the other hand, exhibit Flo11-dependent flocculation and biofilm formation but do not invade agar or form pseudohyphae. In order to study the nature of the Flo11p proteins produced by these two types of strains, we examined secreted Flo11p, encoded by a plasmid-borne gene, in which the glycosylphosphatidylinositol anchor sequences had been replaced by a histidine tag. A protein of approximately 196 kDa was secreted from both strains, which upon purification and concentration, aggregated into a form with a very high molecular mass. When secreted Flo11p was covalently attached to microscopic beads, it conferred the ability to specifically bind to S. cerevisiae var. diastaticus cells, which flocculate, but not to Sigma1278b cells, which do not flocculate. This was true for the 196-kDa form as well as the high-molecular-weight form of Flo11p, regardless of the strain source. The coated beads bound to S. cerevisiae var. diastaticus cells expressing FLO11 and failed to bind to cells with a deletion of FLO11, demonstrating a homotypic adhesive mechanism. Flo11p was shown to be a mannoprotein. Bead-to-cell adhesion was inhibited by mannose, which also inhibits Flo11-dependent flocculation in vivo, further suggesting that this in vitro system is a useful model for the study of fungal adhesion.
絮凝蛋白Flo11/Muc1具有多种表型效应。Sigma1278b菌株背景的酿酒酵母细胞需要Flo11p才能形成假菌丝、侵入琼脂、粘附于塑料并形成生物膜,但它们不会絮凝。另一方面,我们发现糖化酵母菌株表现出Flo11依赖性絮凝和生物膜形成,但不会侵入琼脂或形成假菌丝。为了研究这两种菌株产生的Flo11p蛋白的性质,我们检测了由质粒携带基因编码的分泌型Flo11p,其中糖基磷脂酰肌醇锚定序列已被组氨酸标签取代。两种菌株都分泌出一种约196 kDa的蛋白质,纯化和浓缩后,它聚集成一种分子量非常高的形式。当分泌型Flo11p共价连接到微小珠子上时,它赋予了与能絮凝的糖化酵母细胞特异性结合的能力,但不能与不能絮凝的Sigma1278b细胞结合。对于196 kDa形式以及Flo11p的高分子量形式都是如此,无论菌株来源如何。包被的珠子与表达FLO11的糖化酵母细胞结合,而不能与缺失FLO11的细胞结合,这证明了一种同型粘附机制。Flo11p被证明是一种甘露糖蛋白。珠子与细胞的粘附受到甘露糖的抑制,甘露糖在体内也抑制Flo11依赖性絮凝,这进一步表明这个体外系统是研究真菌粘附的有用模型。