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首页> 外文期刊>FEMS Yeast Research >Gene expression analysis using strains constructed by NHEJ-mediated one-step promoter cloning in the yeast Kluyveromyces marxianus
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Gene expression analysis using strains constructed by NHEJ-mediated one-step promoter cloning in the yeast Kluyveromyces marxianus

机译:基因表达分析使用NHEJ介导的一步启动子克隆在酵母Kluyveromyces Marxianus中构建的菌株

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Gene expression analysis provides valuable information to evaluate cellular state. Unlike quantitative mRNA analysis techniques like reverse-transcription PCR and microarray, expression analysis using a reporter gene has not been commonly used for multiple-gene analysis, probably due to the difficulty in preparing multiple reporter-gene constructs. To circumvent this problem, we developed a novel one-step reporter-gene construction system mediated by non-homologous end joining (NHEJ) in the yeast Kluyveromyces marxianus. As a selectable reporter gene, the ScURA3 selection marker was fused in frame with a red fluorescent gene yEmRFP (ScURA3:yEmRFP). The N-terminally truncated ScURA3: yEmRFP fragment was prepared by PCR. Promoter sequences were also prepared by PCR using primers containing the sequence of the deleted ScURA3 N-terminus to attach at their 3' ends. The two DNA fragments were used for the transformation of a ura3(-) strain of K. marxianus, in which two DNA fragments are randomly joined and integrated into the chromosome through NHEJ. Only the correctly aligned fragments produced transformants on uracil-deficient medium and expressed red fluorescence under the control of the introduced promoters. A total of 36 gene promoters involved in glycolysis and other pathways were analyzed. Fluorescence measurements of these strains allowed real-time gene expression analysis in different culture conditions.
机译:基因表达分析提供了评估细胞状态的有价值的信息。与逆转录PCR和微阵列等定量mRNA分析技术不同,使用报告基因的表达分析尚未常用于多基因分析,可能是由于难以制备多个报告基因构建体。为了规避这个问题,我们开发了一种新颖的一步记者 - 基因施工系统,由非同源末端连接(NHEJ)在酵母Kluyveromyces Marxianus中介导。作为可选报告基因,SCURA3选择标记用红色荧光基因YEMRFP(SCURA3:YEMRFP)融合在框架中。通过PCR制备N-末端截短的SCURA3:YEMRFP片段。通过PCR使用含有含有缺失的Scura3 N-末端的序列的引物来制备启动子序列,以在其3'末端附着。两种DNA片段用于转化K.Marxianus的URA3( - )株,其中两个DNA片段随机连接并通过NHEJ将其整合到染色体中。只有正确对齐的片段在尿嘧啶缺陷型培养基上产生转化体,并在引入的启动子的控制下表达红色荧光。分析了参与糖酵解和其他途径的36种基因启动子。这些菌株的荧光测量允许在不同培养条件下实时基因表达分析。

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