首页> 外文OA文献 >Msn1p/Mss10p, Mss11p and Muc1p/Flo11p are part of a signal transduction pathway downstream of Mep2p regulating invasive growth and pseudohyphal differentiation in Saccharomyces cerevisiae
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Msn1p/Mss10p, Mss11p and Muc1p/Flo11p are part of a signal transduction pathway downstream of Mep2p regulating invasive growth and pseudohyphal differentiation in Saccharomyces cerevisiae

机译:Msn1p / Mss10p,Mss11p和Muc1p / Flo11p是Mep2p下游信号转导通路的一部分,调控啤酒酵母的侵袭性生长和假菌丝分化。

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摘要

In Saccharomyces cerevisiae, a network of signal transduction pathways governs the switch from yeast-type growth to pseudohyphal and invasive growth that occurs in response to nutrient limitation. Important elements of this network have been identified, including nutrient signal receptors, GTP-binding proteins, components of the pheromone-dependent MAP kinase cascade and several transcription factors. However, the structural and functional mapping of these pathways is far from complete. Here, we present data regarding three genes, MSN1/MSS10, MSS11 and MUC1/FLO11, which form an essential part of the signal transduction network establishing invasive growth. Both MSN1 and MSS11 are involved in the co-regulation of starch degradation and invasive growth. Msn1p and Mss11p act downstream of Mep2p and Ras2p and regulate the transcription of both STA2 and MUC1. We show that MUC1 mediates the effect of Msn1p and Mss11p on invasive growth. In addition, our results suggest that the activity of Msn1p is independent of the invasive growth MAP kinase cascade, but that Mss11p is required for the activation of pseudohyphal and invasive growth by Ste12p. We also show that starch metabolism in S. cerevisiae is subject to regulation by components of the MAP kinase cascade.
机译:在酿酒酵母中,信号转导途径的网络控制着从酵母类型的生长向假菌丝和侵袭性生长的转换,这种变化是由于营养限制而发生的。已经确定了该网络的重要元素,包括营养信号受体,GTP结合蛋白,信息素依赖性MAP激酶级联反应的成分和几种转录因子。但是,这些途径的结构和功能作图远未完成。在这里,我们介绍有关三个基因,MSN1 / MSS10,MSS11和MUC1 / FLO11的数据,它们构成建立侵入性生长的信号转导网络的重要组成部分。 MSN1和MSS11均参与淀粉降解和侵袭性生长的共同调控。 Msn1p和Mss11p在Mep2p和Ras2p的下游起作用,并调节STA2和MUC1的转录。我们显示,MUC1介导Msn1p和Mss11p对侵袭性生长的影响。此外,我们的结果表明,Msn1p的活性与侵袭性生长MAP激酶级联无关,但是Mss11p是Ste12p激活假菌丝和侵袭性生长所必需的。我们还显示,酿酒酵母中的淀粉代谢受MAP激酶级联成分的调节。

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