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The ‘yeast cell wall chip’ – a tool to analyse the regulation of cell wall biogenesis in Saccharomyces cerevisiae

机译:'酵母细胞壁芯片' - 一种分析酿酒酵母中细胞壁生物发生调控的工具

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Within the field of Saccharomyces cerevisiae functional genomics, DNA microarrays have become a very useful tool to study genome-wide gene-expression changes under diverse experimental conditions. Here, the design and production of a gene microarray, called the ‘yeast cell wall chip’, specifically tailored to investigate cell wall functions, is described. This array has been validated and shown to be useful to address gene involvement in the regulation of the response to cell wall damage in yeast. The advantages of this tailored gene microarray, which contains 390 genes, in terms of reproducibility, accuracy, versatility and ease of use are reported. Importantly, the microarray design permits the performance of a double hybridization process (two experiments) on the same slide. Cell wall stress leads to the transcriptional activation of a set of genes involved in cell wall remodelling. This response has been shown to be strongly controlled by the MAP kinase (MAPK) Slt2p, but other signalling pathways have also been suggested to be involved in this process. Here, using the tailored microarray, the role of the HOG1 pathway in the regulation of the transcriptional compensatory response to cell wall damage was evaluated by comparing the transcriptional profiles of a hog1 mutant and a wild-type strain in the presence of Congo red. Two genes, YFL014W (HSP12) and YLR414C, were found to be dependent on the Hog1p MAPK for their induction, indicating that an additional level of regulation of cell wall functions is mediated by this MAPK.
机译:在酿酒酵母酿酒酵母函数基因组学领域,DNA微阵列已成为研究在不同实验条件下基因组基因表达变化的非常有用的工具。这里,描述了一种基因微阵列的设计和制备,称为“酵母细胞壁芯片”,特别定量定制以研究细胞壁功能。该阵列已被验证并显示可用于解决基因参与对酵母细胞壁损伤的反应的调节。据报道,这种量身定制的基因微阵列的优点,其含有390个基因的重现性,准确性,多功能性和易用性。重要的是,微阵列设计允许在同一载玻片上进行双杂交过程(两个实验)的性能。细胞壁应力导致涉及细胞壁重塑的一组基因的转录激活。已经显示该响应被MAP激酶(MAPK)SLT2P强烈控制,但也提出了其他信令途径参与了该过程。这里,使用量身定制的微阵列,通过在刚果红色存在下比较猪突变体和野生型菌株的转录谱来评估霍格1途径在调节对细胞壁损伤的转录补偿性响应的调节中的作用。发现两个基因,YFL014W(HSP12)和YLR414C依赖于霍氏MAPK进行诱导,表明通过该MAPK介导的细胞壁函数的额外调节水平。

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