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首页> 外文期刊>Fungal Genetics and Biology >Regulatory role of the PKA pathway in dimorphism and mating in Yarrowia lipolytica
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Regulatory role of the PKA pathway in dimorphism and mating in Yarrowia lipolytica

机译:PKA通路在解脂耶氏酵母中的二态性和交配中的调控作用

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Previous studies on the dimorphic transition of Yarrowia lipolytica suggested opposite roles for MAPK and PKA pathways in this phenomenon. To obtain conclusive evidences for these opposite roles we isolated and disrupted the unique gene encoding the Pka catalytic subunit (TPK1). TPK1 was regulated only at the post-transcriptional level, with Pka activity increasing during yeast-like growth. tpk1 null mutants were viable and without growth defects, but more sensitive to different stress conditions. Deltatpk1 mutants were mating-deficient, and grew constitutively in the mycelial form, whereas Deltaste11 (Mapkkk-less)/Deltatpk1 double mutants grew in the yeast form, indicating that this is the default growth pattern of the fungus. Our data confirm that MAPK and PKA pathways operate in opposition during the dimorphic behavior of Y. lipolytica, but synergic in mating. These data stress the idea that in different fungi both signal transduction systems may operate distinctly or even be antagonistic or synergic in the coordination of cell responses to different stimuli.
机译:先前关于解脂耶氏酵母双态转化的研究表明,在这种现象中,MAPK和PKA通路的作用相反。为了获得这些相反作用的确凿证据,我们分离并破坏了编码Pka催化亚基(TPK1)的独特基因。 TPK1仅在转录后水平受调控,在酵母样生长过程中Pka活性增加。 tpk1空突变体是可行的,没有生长缺陷,但对不同的胁迫条件更敏感。 Deltatpk1突变体缺乏交配,并以菌丝形式组成性生长,而Deltaste11(无Mapkkk缺失)/ Deltatpk1双重突变体以酵母形式生长,表明这是真菌的默认生长方式。我们的数据证实,MAPK和PKA通路在解脂耶氏酵母的双态行为中相反,但在交配中具有协同作用。这些数据强调了这样的想法,即在不同的真菌中,两个信号转导系统在协调对不同刺激的细胞反应中可能发挥明显作用,甚至具有拮抗作用或协同作用。

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