Olesnicky N S, Brown A J, Dowell S J, Casselton L A
Department of Plant Sciences, University of Oxford, Oxford, OX1 3RB, UK.
EMBO J. 1999 May 17;18(10):2756-63. doi: 10.1093/emboj/18.10.2756.
In the mushroom Coprinus cinereus, the multiallelic B mating type genes are predicted to encode a large family of seven-transmembrane domain receptors and CaaX-modified pheromones. We have shown that a single amino acid change Q229P in transmembrane domain VI of one receptor confers a self-compatible mating phenotype. Using a heterologous yeast assay, we have demonstrated that this C.cinereus pheromone receptor is a G-protein-coupled receptor and that the Q229P mutation is constitutively activating. A C.cinereus pheromone precursor was processed to an active species specifically in yeast MATa cells and activated the co-expressed wild-type receptor. Yeast cells expressing the wild-type receptor were used to test the activity of synthetic peptides, enabling us to predict the structure of the mature C.cinereus pheromone and to show that the Q229P mutation does not compromise normal receptor function.
在灰盖鬼伞蘑菇中,多等位基因B交配型基因预计编码一个由七个跨膜结构域受体和CaaX修饰信息素组成的大家族。我们已经表明,一个受体跨膜结构域VI中的单个氨基酸变化Q229P赋予了自交亲和的交配表型。使用异源酵母检测,我们已经证明这种灰盖鬼伞信息素受体是一种G蛋白偶联受体,并且Q229P突变是组成型激活的。一种灰盖鬼伞信息素前体在酵母MATa细胞中被特异性加工成活性形式,并激活共表达的野生型受体。表达野生型受体的酵母细胞被用于测试合成肽的活性,使我们能够预测成熟灰盖鬼伞信息素的结构,并表明Q229P突变不会损害正常的受体功能。