Department of Biochemistry, Microbiology and Immunology, University of Saskatchewan, Saskatoon, SK, S7N 5E5, Canada.
College of Life Sciences, Capital Normal University, Beijing, 100048, China.
Cell Biol Toxicol. 2023 Aug;39(4):1531-1547. doi: 10.1007/s10565-022-09745-x. Epub 2022 Jul 9.
DDI2 and DDI3 (DDI2/3) are two identical genes in Saccharomyces cerevisiae encoding cyanamide (CY) hydratase. They are not only highly induced by CY, but also by a DNA-damaging agent methyl methanesulfonate (MMS), and the regulatory mechanism is unknown. In this study, we performed a modified genome-wide genetic synthetic array screen and identified Fzf1 as a zinc-finger transcriptional activator required for CY/MMS-induced DDI2/3 expression. Fzf1 binds to a DDI2/3 promoter consensus sequence CS2 in vivo and in vitro, and this interaction was enhanced in response to the CY treatment. Indeed, experimental over production of Fzf1 alone was sufficient to induce DDI2/3 expression; however, CY and MMS treatments did not cause the accumulation or apparent alteration in migration of cellular Fzf1. To test a hypothesis that Fzf1 is activated by covalent modification of CY and MMS, we performed mass spectrometry of CY/MMS-treated Fzf1 and detected a few modified lysine residues. Amino acid substitutions of these residues revealed that Fzf1-K70A completely abolished MMS-induced and reduced CY-induced DDI2/3 expression, indicating that the Fzf1-K70 methylation activates Fzf1. This study collectively reveals a novel regulatory mechanism by which Fzf1 is activated by chemical modifications and in turn induces the expression of its target genes for detoxification.
DDI2 和 DDI3(DDI2/3)是酿酒酵母中两个相同的基因,编码氰胺(CY)水解酶。它们不仅被 CY 高度诱导,还被 DNA 损伤试剂甲基甲磺酸酯(MMS)诱导,但其调控机制尚不清楚。在这项研究中,我们进行了改良的全基因组遗传合成阵列筛选,鉴定出 Fzf1 是 CY/MMS 诱导 DDI2/3 表达所必需的锌指转录激活因子。Fzf1 在体内和体外与 DDI2/3 启动子的共有序列 CS2 结合,这种相互作用在 CY 处理后增强。事实上,单独过表达 Fzf1 足以诱导 DDI2/3 的表达;然而,CY 和 MMS 处理不会导致细胞 Fzf1 的积累或明显迁移改变。为了验证 Fzf1 被 CY 和 MMS 的共价修饰激活的假设,我们对 CY/MMS 处理的 Fzf1 进行了质谱分析,检测到几个修饰的赖氨酸残基。这些残基的氨基酸取代表明,Fzf1-K70A 完全消除了 MMS 诱导的和降低了 CY 诱导的 DDI2/3 表达,表明 Fzf1-K70 甲基化激活了 Fzf1。这项研究共同揭示了一种新的调控机制,即 Fzf1 被化学修饰激活,进而诱导其靶基因的表达以解毒。