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鬼伞属中具有改变的信息素-受体特异性的自交亲和B突变体。

Self-compatible B mutants in coprinus with altered pheromone-receptor specificities.

作者信息

Olesnicky N S, Brown A J, Honda Y, Dyos S L, Dowell S J, Casselton L A

机构信息

Department of Plant Sciences, University of Oxford, Oxford OX1 3RB, United Kingdom.

出版信息

Genetics. 2000 Nov;156(3):1025-33. doi: 10.1093/genetics/156.3.1025.

Abstract

A successful mating in the mushroom Coprinus cinereus brings together a compatible complement of pheromones and G-protein-coupled receptors encoded by multiallelic genes at the B mating-type locus. Rare B gene mutations lead to constitutive activation of B-regulated development without the need for mating. Here we characterize a mutation that arose in the B6 locus and show that it generates a mutant receptor with a single amino acid substitution (R96H) at the intracellular end of transmembrane domain III. Using a heterologous yeast assay and synthetic pheromones we show that the mutation does not make the receptor constitutively active but permits it to respond inappropriately to a normally incompatible pheromone encoded within the same B6 locus. Parallel experiments carried out in Coprinus showed that a F67W substitution in this same pheromone enabled it to activate the normally incompatible wild-type receptor. Together, our experiments show that a single amino acid replacement in either pheromone or receptor can deregulate the specificity of ligand-receptor recognition and confer a self-compatible B phenotype. In addition, we use the yeast assay to demonstrate that different receptors and pheromones found at a single B locus belong to discrete subfamilies within which receptor activation cannot normally occur.

摘要

在灰盖鬼伞蘑菇中,一次成功的交配会使多等位基因B交配型位点上由多等位基因编码的信息素和G蛋白偶联受体的互补兼容型组合在一起。罕见的B基因突变会导致B调控发育的组成型激活,而无需交配。在这里,我们对在B6位点出现的一个突变进行了表征,并表明它产生了一种突变受体,该受体在跨膜结构域III的细胞内末端有一个单氨基酸取代(R96H)。使用异源酵母检测和合成信息素,我们表明该突变不会使受体组成型激活,但允许其对同一B6位点内编码的通常不兼容的信息素做出不适当的反应。在灰盖鬼伞中进行的平行实验表明,这种相同信息素中的F67W取代使其能够激活通常不兼容的野生型受体。总之,我们的实验表明,信息素或受体中的单个氨基酸替换可以解除配体-受体识别的特异性,并赋予自兼容的B表型。此外,我们使用酵母检测来证明在单个B位点发现的不同受体和信息素属于离散的亚家族,在这些亚家族中通常不会发生受体激活。

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