AFT1转录因子对于酿酒酵母中高亲和力铁摄取基因的表达有不同的需求。
The AFT1 transcriptional factor is differentially required for expression of high-affinity iron uptake genes in Saccharomyces cerevisiae.
作者信息
Casas C, Aldea M, Espinet C, Gallego C, Gil R, Herrero E
机构信息
Departament de Ciències Mèdiques Bàsiques, Facultat de Medicina, Universitat de Lleida, Spain.
出版信息
Yeast. 1997 Jun 15;13(7):621-37. doi: 10.1002/(SICI)1097-0061(19970615)13:7<621::AID-YEA121>3.0.CO;2-U.
High-affinity iron uptake in Saccharomyces cerevisiae involves the extracytoplasmic reduction of ferric ions by FRE1 and FRE2 reductases. Ferrous ions are then transported across the plasma membrane through the FET3 oxidase-FTR1 permease complex. Expression of the high-affinity iron uptake genes is induced upon iron deprivation. We demonstrate that AFT1 is differentially involved in such regulation. Aft1 protein is required for maintaining detectable non-induced level of FET3 expression and for induction of FRE2 in iron starvation conditions. On the contrary, FRE1 mRNA induction is normal in the absence of Aft1, although the existence of AFT1 point mutations causing constitutive expression of FRE1 (Yamaguchi-Iwai et al., EMBO J. 14: 1231-1239, 1995) indicates that Aft1 may also participate in FRE1 expression in a dispensable way. The alterations in the basal levels of expression of the high-affinity iron uptake genes may explain why the AFT1 mutant is unable to grow on respirable carbon sources. Overexpression of AFT1 leads to growth arrest of the G1 stage of the cell cycle. Aft1 is a transcriptional activator that would be part of the different transcriptional complexes interacting with the promoter of the high-affinity iron uptake genes. Aft1 displays phosphorylation modifications depending on the growth stage of the cells, and it might link induction of genes for iron uptake to other metabolically dominant requirement for cell growth.
酿酒酵母中的高亲和力铁摄取涉及FRE1和FRE2还原酶对铁离子的胞外还原。然后亚铁离子通过FET3氧化酶-FTR1通透酶复合物跨质膜运输。高亲和力铁摄取基因的表达在缺铁时被诱导。我们证明AFT1以不同方式参与这种调节。Aft1蛋白对于维持FET3表达的可检测非诱导水平以及在铁饥饿条件下诱导FRE2是必需的。相反,在没有Aft1的情况下,FRE1 mRNA的诱导是正常的,尽管存在导致FRE1组成型表达的AFT1点突变(Yamaguchi-Iwai等人,《欧洲分子生物学组织杂志》14:1231-1239,1995)表明Aft1也可能以非必需方式参与FRE1表达。高亲和力铁摄取基因基础表达水平的改变可能解释了为什么AFT1突变体无法在可呼吸碳源上生长。AFT1的过表达导致细胞周期G1期的生长停滞。Aft1是一种转录激活因子,它可能是与高亲和力铁摄取基因启动子相互作用的不同转录复合物的一部分。Aft1根据细胞的生长阶段显示磷酸化修饰,并且它可能将铁摄取基因的诱导与细胞生长的其他代谢主导需求联系起来。