Umemura K, Atomi H, Kanai T, Takeshita S, Kanayama N, Ueda M, Tanaka A
Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Japan.
Eur J Biochem. 1997 Feb 1;243(3):748-52. doi: 10.1111/j.1432-1033.1997.00748.x.
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.
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。