Schüller H J, Schorr R, Hoffmann B, Schweizer E
Institut für Mikrobiologie und Biochemie, Lehrstuhl Biochemie, Erlangen, Germany.
Nucleic Acids Res. 1992 Nov 25;20(22):5955-61. doi: 10.1093/nar/20.22.5955.
The sequence motif 5' TYTTCACATGY 3' functions as an upstream activation site common to both yeast fatty acid synthase genes, FAS1 and FAS2. In addition, this UASFAS element is shared by all so far characterized genes of yeast phospholipid biosynthesis. We have investigated the influence of a functional INO4 gene previously described as a regulator of inositol biosynthesis on the expression of FAS1 and FAS2. In a delta ino4 null allele strain, both genes are expressed at only 50% of wild type level. Using individual UASFAS sequence motifs inserted into a heterologous test system, a drastic decrease of reporter gene expression to 2-10% of the wild type reference was observed in the delta ino4 mutant. In gel retardation assays, the protein-DNA complex involving the previously described FAS binding factor 1, Fbf1, was absent when using a protein extract from the delta ino4 mutant. On the other hand, this signal was enhanced with an extract from cells grown under conditions of inositol/choline derepression. Subsequent experiments demonstrated that INO4 expression is itself affected by phospholipid precursors, mediated by an UASFAS element in the INO4 upstream region. Thus, in addition of being an activator of phospholipid biosynthetic genes, INO4 is also subject to a positive autoregulatory loop in its own biosynthesis.
序列基序5'TYTTCACATGY 3'作为酵母脂肪酸合酶基因FAS1和FAS2共有的上游激活位点发挥作用。此外,这种UASFAS元件在酵母磷脂生物合成的所有迄今已鉴定的基因中都存在。我们研究了先前被描述为肌醇生物合成调节因子的功能性INO4基因对FAS1和FAS2表达的影响。在delta ino4缺失等位基因菌株中,这两个基因的表达仅为野生型水平的50%。使用插入到异源测试系统中的单个UASFAS序列基序,在delta ino4突变体中观察到报告基因表达急剧下降至野生型对照的2 - 10%。在凝胶阻滞试验中,当使用来自delta ino4突变体的蛋白质提取物时,涉及先前描述的FAS结合因子1(Fbf1)的蛋白质 - DNA复合物不存在。另一方面,用在肌醇/胆碱去阻遏条件下生长的细胞提取物时,该信号增强。随后的实验表明,INO4的表达本身受磷脂前体的影响,这是由INO4上游区域中的UASFAS元件介导的。因此,INO4除了是磷脂生物合成基因的激活剂外,在其自身的生物合成中也受到正反馈调节环的作用。