Eckert-Boulet Nadine, Nielsen Peter Stein, Friis Carsten, dos Santos Margarida Moreira, Nielsen Jens, Kielland-Brandt Morten C, Regenberg Birgitte
Centre for Microbial Biotechnology, BioCentrum-DTU, Technical University of Denmark, DK-2800 Kgs Lyngby, Denmark.
Yeast. 2004 Jun;21(8):635-48. doi: 10.1002/yea.1120.
S. cerevisiae responds to the presence of amino acids in the environment through the membrane-bound complex SPS, by altering transcription of several genes. Global transcription analysis shows that 46 genes are induced by L-citrulline. Under the given conditions there appears to be only one pathway for induction with L-citrulline, and this pathway is completely dependent on the SPS component, Ssy1p, and either of the transcription factors, Stp1p and Stp2p. Besides the effects on amino acid permease genes, an ssy1 and an stp1 stp2 mutant exhibit a number of other transcriptional phenotypes, such as increased expression of genes subject to nitrogen catabolite repression and genes involved in stress response. A group of genes involved in the upper part of the glycolysis, including those encoding hexose transporters Hxt4p, Hxt5p, Hxt6p, Hxt7p, hexokinase Hxk1p, glyceraldehyde 3-phosphate dehydrogenase Tdh1p and glucokinase (Glk1p), shows increased transcription levels in either or both of the mutants. Also, most of the structural genes involved in trehalose and glycogen synthesis and a few genes in the glyoxylate cycle and the pentose phosphate pathway are derepressed in the ssy1 and stp1 stp2 strains.
酿酒酵母通过膜结合复合物SPS对环境中氨基酸的存在做出反应,方式是改变几个基因的转录。全基因组转录分析表明,有46个基因受L-瓜氨酸诱导。在给定条件下,似乎只有一条由L-瓜氨酸诱导的途径,并且该途径完全依赖于SPS组分Ssy1p以及转录因子Stp1p和Stp2p中的任何一个。除了对氨基酸通透酶基因的影响外,一个ssy1突变体以及一个stp1 stp2双突变体还表现出许多其他转录表型,例如受氮代谢物阻遏的基因以及参与应激反应的基因的表达增加。一组参与糖酵解上游部分的基因,包括编码己糖转运蛋白Hxt4p、Hxt5p、Hxt6p、Hxt7p的基因、己糖激酶Hxk1p、甘油醛-3-磷酸脱氢酶Tdh1p和葡萄糖激酶(Glk1p),在这两种突变体中的一种或两种中显示出转录水平增加。此外,参与海藻糖和糖原合成的大多数结构基因以及乙醛酸循环和磷酸戊糖途径中的一些基因在ssy1和stp1 stp2菌株中去阻遏。