Kleinschmidt Malte, Schulz Ramona, Braus Gerhard H
Institute of Microbiology and Genetics, Georg-August-University, Grisebachstrasse 8, 37077, Göttingen, Germany.
Curr Genet. 2006 Apr;49(4):218-28. doi: 10.1007/s00294-005-0049-7. Epub 2006 Jan 10.
CPC2/ASC1 is one of the most abundantly transcribed genes in Saccharomyces cerevisiae. It encodes a ribosome-associated Gbeta-like WD protein, which is highly conserved from yeast to man. Here, we show that CPC2 transcription depends on the carbon source and is induced during utilization of the sugar glucose. CPC2 promoter deletion and insertion analyses identified two upstream activation sequence elements for CPC2, which are required for basal expression and regulation. One of these upstream activation sequence elements has an ATGTACGGATGT motif, which has previously been described as a putative binding site for the forkhead-like transcription factor Fhl1p. Deletion of FHL1 reduces CPC2 transcription significantly in presence of glucose, but has no effect when the non-fermentable carbon source ethanol is provided. Increased amounts of the Fhl1p co-regulator Ifh1p induce CPC2 transcription even when ethanol is utilized. These data suggest that the interaction between Fhl1p and Ifh1p is critical for the regulation of CPC2 transcription during utilization of different carbon sources.
CPC2/ASC1是酿酒酵母中转录量最为丰富的基因之一。它编码一种核糖体相关的类Gβ WD蛋白,该蛋白从酵母到人类高度保守。在此,我们表明CPC2转录依赖于碳源,且在利用葡萄糖这种糖类时被诱导。CPC2启动子缺失和插入分析确定了CPC2的两个上游激活序列元件,它们是基础表达和调控所必需的。其中一个上游激活序列元件具有ATGTACGGATGT基序,该基序先前已被描述为叉头样转录因子Fhl1p的假定结合位点。在有葡萄糖存在的情况下,FHL1缺失会显著降低CPC2转录,但当提供不可发酵碳源乙醇时则没有影响。即使在利用乙醇时,Fhl1p的共调节因子Ifh1p量的增加也会诱导CPC2转录。这些数据表明,Fhl1p和Ifh1p之间的相互作用对于不同碳源利用过程中CPC2转录的调控至关重要。