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Genome-wide survey of yeast mutations leading to activation of the yeast cell integrity MAPK pathway: Novel insights into diverse MAPK outcomes

机译:导致酵母细胞完整性MAPK途径活化的酵母突变的全基因组调查:对各种MAPK结果的新颖见解

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Background The yeast cell wall integrity mitogen-activated protein kinase (CWI-MAPK) pathway is the main regulator of adaptation responses to cell wall stress in yeast. Here, we adopt a genomic approach to shed light on two aspects that are only partially understood, namely, the characterization of the gene functional catalog associated with CWI pathway activation and the extent to which MAPK activation correlates with transcriptional outcomes. Results A systematic yeast mutant deletion library was screened for constitutive transcriptional activation of the CWI-related reporter gene MLP1. Monitoring phospho-Slt2/Mpk1 levels in the identified mutants revealed sixty-four deletants with high levels of phosphorylation of this MAPK, including mainly genes related to cell wall construction and morphogenesis, signaling, and those with unknown function. Phenotypic analysis of the last group of mutants suggests their involvement in cell wall homeostasis. A good correlation between levels of Slt2 phosphorylation and the magnitude of the transcriptional response was found in most cases. However, the expression of CWI pathway-related genes was enhanced in some mutants in the absence of significant Slt2 phosphorylation, despite the fact that functional MAPK signaling through the pathway was required. CWI pathway activation was associated to increased deposition of chitin in the cell wall - a known survival compensatory mechanism - in about 30% of the mutants identified. Conclusion We provide new insights into yeast genes related to the CWI pathway and into how the state of activation of the Slt2 MAPK leads to different outcomes, discovering the versatility of this kind of signaling pathways. These findings potentially have broad implications for understanding the functioning of other eukaryotic MAPKs.
机译:背景技术酵母细胞壁完整性促分裂原活化蛋白激酶(CWI-MAPK)途径是酵母中对细胞壁应激适应反应的主要调节因子。在这里,我们采用一种基因组学方法来阐明仅被部分理解的两个方面,即与CWI途径激活相关的基因功能目录的表征以及MAPK激活与转录结果相关的程度。结果筛选了系统的酵母突变体缺失文库,用于CWI相关报道基因MLP1的组成型转录激活。监测已鉴定的突变体中的phospho-Slt2 / Mpk1水平发现了64个具有高水平该MAPK磷酸化水平的缺失,主要包括与细胞壁结构和形态发生,信号转导有关的基因以及功能未知的基因。对最后一组突变体的表型分析表明,它们参与了细胞壁稳态。在大多数情况下,发现Slt2磷酸化水平与转录反应强度之间具有良好的相关性。然而,尽管不需要通过该途径的功能性MAPK信号,但在没有明显Slt2磷酸化的某些突变体中,CWI途径相关基因的表达得以增强。 CWI途径的激活与几丁质在细胞壁中的沉积增加有关-一种已知的生存补偿机制-在大约30%的突变体中被发现。结论我们提供了与CWI途径相关的酵母基因以及Slt2 MAPK激活状态如何导致不同结果的新见解,从而发现了这种信号传导途径的多功能性。这些发现可能对理解其他真核MAPK的功能具有广泛的意义。

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