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热带假丝酵母异柠檬酸裂解酶基因5'上游区域介导的基因表达去阻遏作用在酿酒酵母中受两条不同的调控途径控制。

Derepression of gene expression mediated by the 5' upstream region of the isocitrate lyase gene of Candida tropicalis is controlled by two distinct regulatory pathways in Saccharomyces cerevisiae.

作者信息

Umemura K, Atomi H, Kanai T, Takeshita S, Kanayama N, Ueda M, Tanaka A

机构信息

Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Japan.

出版信息

Eur J Biochem. 1997 Feb 1;243(3):748-52. doi: 10.1111/j.1432-1033.1997.00748.x.

Abstract

The 5' upstream region of the gene encoding isocitrate lyase of Candida tropicalis (UPR-ICL) is functional as a promoter in Saccharomyces cerevisiae, and it is regulated by carbon source; the expression of the gene is repressed when cells are grown on glucose, while it increases to a higher level in acetate-grown cells. Therefore, we have investigated regions in UPR-ICL responsible for gene expression in glucose-grown and acetate-grown cells. In glucose-grown cells, a deletion of the region between -801 and -569 (region G1) significantly decreased gene expression compared with that observed with the complete UPR-ICL. The region from -421 to -379 (region G2) also repressed gene expression in glucose-grown cells. In acetate-grown cells, two regions were found to strongly enhance gene expression, one between -728 and -569 (region A1) and the other between -370 and -356 (region A2). Whereas region A2 contained a sequence motif similar to the carbon-source-responsive element (CSRE), which mediates regulation by carbon source of S. cerevisiae ICL1, region A1 did not show similarity to any reported cis-acting elements. Deletion mutants of UPR-ICL containing only one of these regions showed that each region could independently activate gene expression to a similar level when the cells were grown on acetate. The influences of null mutations in the MIG1, SNF1 and CAT8 genes on regulation of UPR-ICL-mediated gene expression were examined. Expression of the ICL gene with full-length UPR-ICL increased about tenfold in mig1 cells grown on glucose, while little difference was observed in acetate-grown cells. The effects of snf1 and cat8 mutations were different between region-A1-mediated and region-A2-mediated gene expression in acetate-grown cells. Region-A2-mediated expression decreased 95% and 86% in snf1 and cat8 cells, respectively, while region-A1-mediated expression decreased 72% in snf1 cells and was not affected by the cat8 mutation. This finding indicates that region-A1-mediated gene expression is regulated by a pathway independent of CAT8, which is necessary for derepression of CSRE-mediated gene expression in S. cerevisiae.

摘要

热带假丝酵母异柠檬酸裂解酶编码基因(UPR - ICL)的5'上游区域在酿酒酵母中作为启动子发挥功能,且受碳源调控;当细胞在葡萄糖上生长时,该基因的表达受到抑制,而在以乙酸盐为碳源生长的细胞中表达水平升高。因此,我们研究了UPR - ICL中负责葡萄糖生长和乙酸盐生长细胞中基因表达的区域。在葡萄糖生长的细胞中,与完整的UPR - ICL相比, - 801至 - 569区域(区域G1)的缺失显著降低了基因表达。 - 421至 - 379区域(区域G2)在葡萄糖生长的细胞中也抑制基因表达。在乙酸盐生长的细胞中,发现两个区域强烈增强基因表达,一个在 - 728至 - 569之间(区域A1),另一个在 - 370至 - 356之间(区域A2)。区域A2包含一个与碳源响应元件(CSRE)相似的序列基序,CSRE介导酿酒酵母ICL1的碳源调控,而区域A1与任何已报道的顺式作用元件均无相似性。仅包含这些区域之一的UPR - ICL缺失突变体表明,当细胞在乙酸盐上生长时,每个区域均可独立将基因表达激活至相似水平。研究了MIG1、SNF1和CAT8基因的缺失突变对UPR - ICL介导的基因表达调控的影响。在葡萄糖上生长的mig1细胞中,带有全长UPR - ICL的ICL基因表达增加约10倍,而在乙酸盐生长的细胞中未观察到明显差异。在乙酸盐生长的细胞中,snf1和cat8突变对区域A1介导和区域A2介导的基因表达的影响不同。在snf1和cat8细胞中,区域A2介导的表达分别下降了95%和86%,而区域A1介导的表达在snf1细胞中下降了72%,且不受cat8突变的影响。这一发现表明,区域A1介导的基因表达受一条独立于CAT8的途径调控,而CAT8是酿酒酵母中CSRE介导的基因表达去抑制所必需的。

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