Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales, Departamento de Química Biológica; Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Instituto de Química Biológica de la Facultad de Ciencias Exactas y Naturales (IQUIBICEN). Buenos Aires, Argentina.
Microbiology (Reading). 2017 Nov;163(11):1692-1701. doi: 10.1099/mic.0.000560. Epub 2017 Oct 23.
Yeast cells can use γ-aminobutyric acid (GABA), a non-protein amino acid, as a nitrogen source that is mainly imported by the permease Uga4 and catabolized by the enzymes GABA transaminase and succinate-semialdehyde dehydrogenase, encoded by the UGA1 and UGA2 genes, respectively. The three UGA genes are inducible by GABA and subject to nitrogen catabolite repression. Hence, their regulation occurs through two mechanisms, one dependent on the inducer and the other on nitrogen source quality. The aim of this work was to better understand the molecular mechanisms of transcription factors acting on different regulatory elements present in UGA promoters, such as Uga3, Dal81, Leu3 and the GATA factors, and to establish the mechanism of the concerted action between them. We found that Gat1 plays an important role in the induction of UGA4 transcription by GABA and that Gzf3 has an effect in cells grown in a poor nitrogen source such as proline and that this effect is positive on UGA4 expression. We also found that Gln3 and Dal80 affect the interaction of Uga3 and Dal81 on UGA promoters. Moreover, our results indicated that the repressing activity of Leu3 on UGA4 and UGA1 occurs through Dal80 since we demonstrated that Leu3 facilitates Dal80 interaction with DNA. However, when the expression of GATA factors is null or negligible, Leu3 functions as an activator.
酵母细胞可以利用γ-氨基丁酸(GABA)作为氮源,GABA 是一种非蛋白氨基酸,主要通过透性酶 Uga4 摄取,并由 GABA 转氨酶和琥珀酸半醛脱氢酶这两种酶(分别由 UGA1 和 UGA2 基因编码)代谢。UGA1、UGA2 这三个基因受 GABA 诱导并受氮分解代谢物阻遏调控。因此,它们的调控涉及两种机制,一种依赖于诱导物,另一种依赖于氮源质量。本研究的目的是更好地了解作用于 UGA 启动子上不同调控元件(如 Uga3、Dal81、Leu3 和 GATA 因子)的转录因子的分子机制,并确定它们之间协同作用的机制。我们发现,Gat1 在 GABA 诱导 UGA4 转录中起重要作用,Gzf3 在脯氨酸等氮源较差的细胞中对 UGA4 表达有正向影响。我们还发现,Gln3 和 Dal80 影响 Uga3 和 Dal81 在 UGA 启动子上的相互作用。此外,我们的结果表明,Leu3 通过 Dal80 对 UGA4 和 UGA1 的抑制活性,因为我们证明了 Leu3 促进 Dal80 与 DNA 的相互作用。然而,当 GATA 因子的表达为零时或可以忽略不计,Leu3 作为激活剂起作用。