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构巢曲霉中3'-磷酸甘油酸激酶pgk基因表达的功能分析。

Functional analysis of the expression of the 3'-phosphoglycerate kinase pgk gene in Aspergillus nidulans.

作者信息

Streatfield S J, Toews S, Roberts C F

机构信息

Department of Genetics, University of Leicester, UK.

出版信息

Mol Gen Genet. 1992 May;233(1-2):231-40. doi: 10.1007/BF00587584.

Abstract

A functional analysis of the Aspergillus nidulans 3-phosphoglycerate kinase pgk promoter was undertaken using gene fusions to the lacZ gene of Escherichia coli, and introducing these into a beta-galactosidase-deficient strain of A. nidulans. Expression of a particular gene fusion in transformed strains depends upon the site of integration of the vector into the genome, and when specifically targeted to the catabolic quinate dehydrogenase qutE (selective marker) locus is directly proportional to its copy number. The analysis of transformed strains with single copies of pgk promoter deletion--lacZ fusions at the qutE locus identified three constitutive, positively acting sequence elements in the pgk gene. Sequence located between -161 and -120 nucleotides relative to the transcript start site +1, and including an element with a seven-out-of-eight nucleotide match (AAGCAAAT; -131 to -124) to the consensus eukaryotic octamer sequence ATGCAAAT, is essential for expression, and deletion of the complete 41-nucleotide sequence abolishes transcription. Sequence encompassing codons 14 to 183 and including the two introns of pgk contributes approximately one-third of the total activity, and far upstream sequence 5' to position -638 contributes approximately a further one-third total activity. In addition, sequence located -638 to -488 nucleotides, which includes an apparent consensus feature of A. nidulans glycolytic genes, affects carbon source-dependent regulation of expression. This region is required for an approximately 50% increase in pgk expression when A. nidulans is grown on gluconeogenic compared with glycolytic carbon sources.

摘要

利用与大肠杆菌lacZ基因的基因融合,并将其导入构巢曲霉β-半乳糖苷酶缺陷菌株,对构巢曲霉3-磷酸甘油酸激酶pgk启动子进行了功能分析。转化菌株中特定基因融合的表达取决于载体整合到基因组中的位点,当特异性靶向分解代谢的奎尼酸脱氢酶qutE(选择标记)基因座时,其表达与拷贝数成正比。对在qutE基因座处具有单拷贝pgk启动子缺失-lacZ融合的转化菌株进行分析,在pgk基因中鉴定出三个组成型、正向作用的序列元件。相对于转录起始位点+1,位于-161至-120核苷酸之间的序列,包括一个与真核生物八聚体序列ATGCAAAT有八分之七个核苷酸匹配(AAGCAAAT;-131至-124)的元件,对表达至关重要,删除完整的41个核苷酸序列会消除转录。包含pgk的第14至183个密码子并包括两个内含子的序列贡献了总活性的约三分之一,而位于-638位置上游的远上游序列贡献了约另外三分之一的总活性。此外,位于-638至-488核苷酸之间的序列,包括构巢曲霉糖酵解基因的一个明显共有特征,影响表达的碳源依赖性调节。当构巢曲霉在糖异生碳源上生长时,与糖酵解碳源相比,该区域是pgk表达增加约50%所必需的。

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