Lo W S, Dranginis A M
Department of Biological Sciences, St. John's University, Jamaica, New York 11439, USA.
J Bacteriol. 1996 Dec;178(24):7144-51. doi: 10.1128/jb.178.24.7144-7151.1996.
We report the characterization of a gene encoding a novel flocculin related to the STA genes of yeast, which encode secreted glucoamylase. The STA genes comprise sequences that are homologous to the sporulation-specific glucoamylase SGA and to two other sequences, S2 and S1. We find that S2 and S1 are part of a single gene which we have named FLO11. The sequence of FLO11 reveals a 4,104-bp open reading frame on chromosome IX whose predicted product is similar in overall structure to the class of yeast serine/threonine-rich GPI-anchored cell wall proteins. An amino-terminal domain containing a signal sequence and a carboxy-terminal domain with homology to GPI (glycosyl-phosphatidyl-inositol) anchor-containing proteins are separated by a central domain containing a highly repeated threonine- and serine-rich sequence. Yeast cells that express FLO11 aggregate in the calcium-dependent process of flocculation. Flocculation is abolished when FLO11 is disrupted. The product of STA1 also is shown to have flocculating activity. When a green fluorescent protein fusion of FLO11 was expressed from the FLO11 promoter on a single-copy plasmid, fluorescence was observed in vivo at the periphery of cells. We propose that FLO11 encodes a flocculin because of its demonstrated role in flocculation, its structural similarity to other members of the FLO gene family, and the cell surface location of its product. FLO11 gene sequences are present in all yeast strains tested, including all standard laboratory strains, unlike the STA genes which are present only in the variant strain Saccharomyces cerevisiae var. diastaticus. FLO11 differs from all other yeast flocculins in that it is located near a centromere rather than a telomere, and its expression is regulated by mating type. Repression of FLO11-dependent flocculation in diploids is conferred by the mating-type repressor al/alpha2.
我们报道了一个与酵母STA基因相关的新型絮凝蛋白编码基因的特性,酵母STA基因编码分泌型葡糖淀粉酶。STA基因包含与孢子形成特异性葡糖淀粉酶SGA以及另外两个序列S2和S1同源的序列。我们发现S2和S1是一个单一基因的一部分,我们将其命名为FLO11。FLO11的序列在第九条染色体上揭示了一个4104碱基对的开放阅读框,其预测产物在整体结构上与酵母富含丝氨酸/苏氨酸的糖基磷脂酰肌醇(GPI)锚定细胞壁蛋白类相似。一个包含信号序列的氨基末端结构域和一个与含GPI(糖基磷脂酰肌醇)锚定蛋白具有同源性的羧基末端结构域,被一个包含高度重复的富含苏氨酸和丝氨酸序列的中央结构域隔开。表达FLO11的酵母细胞在钙依赖性絮凝过程中聚集。当FLO11被破坏时,絮凝作用消失。STA1的产物也显示具有絮凝活性。当FLO11的绿色荧光蛋白融合体从单拷贝质粒上的FLO11启动子表达时,在体内细胞周边观察到荧光。由于其在絮凝中的作用、与FLO基因家族其他成员的结构相似性以及其产物在细胞表面的定位,我们提出FLO11编码一种絮凝蛋白。与仅存在于变异菌株酿酒酵母变种糖化酵母中的STA基因不同,FLO11基因序列存在于所有测试的酵母菌株中,包括所有标准实验室菌株。FLO11与所有其他酵母絮凝蛋白的不同之处在于,它位于着丝粒附近而非端粒附近,并且其表达受交配型调控。二倍体中FLO11依赖性絮凝的抑制由交配型阻遏物α1/α2赋予。