Life and Health Sciences Research Institute, School of Health Sciences, University of Minho, Braga, Portugal.
PLoS One. 2012;7(10):e47033. doi: 10.1371/journal.pone.0047033. Epub 2012 Oct 4.
Recent evidence suggests that Paracoccidioides species have the potential to undergo sexual reproduction, although no sexual cycle has been identified either in nature or under laboratory conditions. In the present work we detected low expression levels of the heterothallic MAT loci genes MAT1-1 and MAT1-2, the α-pheromone (PBα) gene, and the α- and a-pheromone receptor (PREB and PREA) genes in yeast and mycelia forms of several Paracoccidioides isolates. None of the genes were expressed in a mating type dependent manner. Stimulation of P. brasiliensis MAT1-2 strains with the synthetic α-pheromone peptide failed to elicit transcriptional activation of MAT1-2, PREB or STE12, suggesting that the strains tested are insensitive to α-pheromone. In order to further evaluate the biological functionality of the pair α-pheromone and its receptor, we took advantage of the heterologous expression of these Paracoccidioides genes in the corresponding S. cerevisiae null mutants. We show that S. cerevisiae strains heterologously expressing PREB respond to Pbα pheromone either isolated from Paracoccidioides culture supernatants or in its synthetic form, both by shmoo formation and by growth and cell cycle arrests. This allowed us to conclude that Paracoccidioides species secrete an active α-pheromone into the culture medium that is able to activate its cognate receptor. Moreover, expression of PREB or PBα in the corresponding null mutants of S. cerevisiae restored mating in these non-fertile strains. Taken together, our data demonstrate pheromone signaling activation by the Paracoccidioides α-pheromone through its receptor in this yeast model, which provides novel evidence for the existence of a functional mating signaling system in Paracoccidioides.
最近的证据表明,球腔菌属的某些种具有进行有性生殖的潜力,尽管无论是在自然环境中还是在实验室条件下,都尚未鉴定出任何有性循环。在本工作中,我们检测到,在几种球腔菌属分离株的酵母和菌丝体形式中,异宗配合 MAT 基因座基因 MAT1-1 和 MAT1-2、α-信息素(PBα)基因以及α-和 a-信息素受体(PREB 和 PREA)基因的表达水平较低。这些基因均未表现出依赖于交配型的表达模式。用合成的α-信息素肽刺激 P. brasiliensis MAT1-2 菌株未能引起 MAT1-2、PREB 或 STE12 的转录激活,这表明所测试的菌株对α-信息素不敏感。为了进一步评估配对 α-信息素及其受体的生物学功能,我们利用这些球腔菌属基因在相应的 S. cerevisiae 缺失突变体中的异源表达。我们证明,异源表达 PREB 的 S. cerevisiae 菌株对来自球腔菌属培养上清液的 Pbα 信息素或其合成形式均有反应,表现为形成扭曲形以及生长和细胞周期停滞。这使我们得出结论,球腔菌属将有活性的α-信息素分泌到培养基中,该信息素能够激活其同源受体。此外,在 S. cerevisiae 相应的缺失突变体中表达 PREB 或 PBα 恢复了这些非可育菌株的交配。总之,我们的数据表明,在该酵母模型中,球腔菌属的α-信息素通过其受体激活了信息素信号,为球腔菌属存在功能性交配信号系统提供了新的证据。