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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Identification of a minimal cre1 promoter sequence promoting glucose-dependent gene expression in the beta-lactam producer Acremonium chrysogenum.
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Identification of a minimal cre1 promoter sequence promoting glucose-dependent gene expression in the beta-lactam producer Acremonium chrysogenum.

机译:鉴定最小的cre1启动子序列,该序列可促进β-内酰胺生产者产黄顶生孢霉中葡萄糖依赖性基因的表达。

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摘要

The promoter of the cre1 gene, encoding the glucose-dependent regulator CRE1 from the beta-lactam producer Acremonium chrysogenum, carries 15 putative CRE1 binding sites (BS1 to BS15). For a detailed analysis, we fused cre1 promoter deletion derivatives with the DsRed reporter gene to perform a comparative gene expression analysis. Plate assays, Northern hybridizations, and spectrofluorometric measurements of DsRed identified the minimal D4 promoter sequence that promoted glucose-dependent expression. Truncated recombinant CRE1 interacted with D4 in electromobility shift analysis and these binding studies were further extended with two oligonucleotides, carrying putative CRE1 binding sites BS14 and BS15. Surface plasmon resonance analysis was performed using BS14 and BS15, along with four derivatives containing 2 or 4 bp substitutions within BS14 and BS15, respectively. Substitutions within BS14 abolished the high affinity interaction with CRE1, while mutations in BS15 only marginally diminished the affinity with CRE1. In vivo analysis of a modified D4 sequence with substitutions in the two binding sites confirmed the in vitro binding results and still promoted glucose-dependent gene expression. Our results will contribute to the construction of versatile expression vectors carrying a minimal cre1 promoter sequence that still confers glucose-dependent induction of gene expression.
机译:cre1基因的启动子编码来自β-内酰胺生产者产黄顶孢的葡萄糖依赖性调节剂CRE1,带有15个假定的CRE1结合位点(BS1至BS15)。为了进行详细分析,我们将cre1启动子缺失衍生物与DsRed报告基因融合,以进行比较基因表达分析。平板测定,Northern杂交和DsRed的荧光分光光度测定确定了促进葡萄糖依赖性表达的最小D4启动子序列。截短的重组CRE1在电动迁移分析中与D4相互作用,这些结合研究进一步扩展了两个带有假定的CRE1结合位点BS14和BS15的寡核苷酸。使用BS14和BS15以及在BS14和BS15中分别包含2或4 bp取代的四种衍生物进行表面等离振子共振分析。 BS14中的取代取消了与CRE1的高亲和力相互作用,而BS15中的突变仅略微减少了与CRE1的亲和力。在两个结合位点具有取代基的修饰D4序列的体内分析证实了体外结合结果,并且仍促进了葡萄糖依赖性基因的表达。我们的结果将有助于构建携带最小的cre1启动子序列的通用表达载体,该启动子序列仍赋予葡萄糖依赖的基因表达诱导作用。

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