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首页> 外文期刊>Applied and Environmental Microbiology >Analysis of mechanisms regulating expression of the ver-1 gene, involved in aflatoxin biosynthesis.
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Analysis of mechanisms regulating expression of the ver-1 gene, involved in aflatoxin biosynthesis.

机译:黄曲霉毒素生物合成中调控ver-1基因表达的机制分析。

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Previous studies have shown that ver-1A encodes an enzyme which is directly involved in the conversion of versicolorin A to demethylsterigmatocystin during aflatoxin B1 (AFB1) biosynthesis in the filamentous fungus Aspergillus parasiticus. In this study, two different tools were utilized to study the regulation of ver-1A expression at the level of transcription and protein accumulation. First, a ver-1A cDNA was expressed in Escherichia coli with the vector pMAL-c2. The resulting maltose-binding protein-Ver-1A fusion protein was purified and used to generate polyclonal antibodies. Western blot analyses showed that these antibodies specifically recognized the Ver-1 protein (approximately 28 kDa) in cell extracts of Aspergillus parasiticus SU1. Second, a GUS (uidA; encodes beta-glucuronidase) reporter system was developed by fusing the ver-1A promoter and transcription terminator to the GUS gene. Reporter constructs were transformed into A. parasiticus, resulting in a single copy of the ver-1A-GUS reporter integrated adjacent to the wild-type ver-1A gene (3' end) in the chromosome. Western blot analysis, Northern hybridization analysis, and a GUS activity assay were used to analyze transformants. The timing of appearance and pattern of accumulation of GUS transcript and GUS protein in transformants were consistent with the timing of appearance and pattern of accumulation of ver-1 transcript and Ver-1 protein. These data suggested that the GUS gene was under the same regulatory control as the wild-type ver-1 gene and confirmed that transcriptional regulation plays an important role in ver-1A expression. Integration of the ver-1A-GUS reporter construct at the niaD locus resulted in 500-fold-lower GUS activity, but the temporal pattern of accumulation of GUS activity was not affected. Therefore, chromosomal location can play a role in determining the level of gene expression in A. parasiticus and should be an important consideration when analyzing promoter function in this organism.
机译:先前的研究表明,ver-1A编码一种酶,其在丝状真菌寄生曲霉曲霉菌中黄曲霉毒素B1(AFB1)生物合成过程中直接参与了versicolorin A到demethylsterigmatocystin的转化。在这项研究中,使用了两种不同的工具来研究ver-1A在转录和蛋白质积累水平上的表达调控。首先,用载体pMAL-c2在大肠杆菌中表达ver-1A cDNA。纯化得到的麦芽糖结合蛋白-Ver-1A融合蛋白,并用于产生多克隆抗体。蛋白质印迹分析表明,这些抗体能特异性识别寄生虫曲霉SU1细胞提取物中的Ver-1蛋白(约28 kDa)。其次,通过将ver-1A启动子和转录终止子融合到GUS基因上,开发了GUS(uidA;编码β-葡萄糖醛酸酶)报告系统。将报告基因构建体转化到寄生曲霉中,从而得到整合在染色体中与野生型ver-1A基因(3'端)相邻的ver-1A-GUS报告基因的单拷贝。 Western印迹分析,Northern杂交分析和GUS活性测定用于分析转化体。 GUS转录本和GUS蛋白在转化子中出现和积累的时机与ver-1转录本和Ver-1蛋白的出现和积累时机一致。这些数据表明,GUS基因与野生型ver-1基因处于相同的调控之下,并证实转录调控在ver-1A表达中起重要作用。 ver-1A-GUS报告基因构建体在niaD位点的整合导致GUS活性降低了500倍,但GUS活性积累的时间模式并未受到影响。因此,染色体的位置可以在确定拟寄生曲霉中基因表达的水平中发挥作用,并且在分析该生物中的启动子功能时应该成为重要的考虑因素。

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