Department of Biochemistry, Indian Institute of Science, Bangalore, India.
Department of Biochemistry, Indian Institute of Science, Bangalore, India.
J Biol Chem. 2021 Oct;297(4):101247. doi: 10.1016/j.jbc.2021.101247. Epub 2021 Sep 25.
The zinc finger transcription factor Mxr1p regulates the transcription of genes involved in methanol, acetate, and amino acid metabolism of the industrial yeast Pichia pastoris (a.k.a. Komagataella phaffii) by binding to Mxr1p response elements in their promoters. Here, we demonstrate that Mxr1p is a key regulator of ethanol metabolism as well. Using transcriptomic analysis, we identified target genes of Mxr1p that mediate ethanol metabolism, including ALD6-1 encoding an aldehyde dehydrogenase. ALD6-1 is essential for ethanol metabolism, and the ALD6-1 promoter harbors three Mxr1p response elements to which Mxr1p binds in vitro and activates transcription in vivo. We show that a nine-amino acid transactivation domain located between amino acids 365 and 373 of Mxr1p is essential for the transactivation of ALD6-1 to facilitate ethanol metabolism. Mxr1N250, containing the N-terminal 250 amino acids of Mxr1p, localized to the nucleus of cells metabolizing ethanol dependent on basic amino acid residues present between amino acids 75 and 85. While the N-terminal 400 amino acids of Mxr1p are sufficient for the activation of target genes essential for ethanol metabolism, the region between amino acids 401 and 1155 was also required for the regulation of genes essential for methanol metabolism. Finally, we identified several novel genes whose expression is differentially regulated by Mxr1p during methanol metabolism by DNA microarray. This study demonstrates that Mxr1p is a key regulator of ethanol metabolism and provides new insights into the mechanism by which Mxr1p functions as a global regulator of multiple metabolic pathways of P. pastoris.
锌指转录因子 Mxr1p 通过结合其启动子中的 Mxr1p 反应元件,调节甲醇、乙酸和氨基酸代谢相关基因在工业酵母巴斯德毕赤酵母(又名 Komagataella phaffii)中的转录。在这里,我们证明 Mxr1p 也是乙醇代谢的关键调节因子。通过转录组分析,我们确定了 Mxr1p 介导乙醇代谢的靶基因,包括编码醛脱氢酶的 ALD6-1。ALD6-1 对乙醇代谢至关重要,ALD6-1 启动子含有三个 Mxr1p 反应元件,Mxr1p 在体外结合这些元件并在体内激活转录。我们表明,Mxr1p 中位于氨基酸 365 和 373 之间的九个氨基酸反式激活结构域对于 ALD6-1 的反式激活至关重要,有助于乙醇代谢。包含 Mxr1p N 端 250 个氨基酸的 Mxr1N250 依赖于存在于氨基酸 75 和 85 之间的碱性氨基酸残基,定位在细胞代谢乙醇的细胞核中。虽然 Mxr1p 的 N 端 400 个氨基酸足以激活乙醇代谢所必需的靶基因,但氨基酸 401 与 1155 之间的区域对于调节甲醇代谢所必需的基因也是必需的。最后,我们通过 DNA 微阵列鉴定了在甲醇代谢过程中受 Mxr1p 差异调控的几个新基因。本研究表明 Mxr1p 是乙醇代谢的关键调节因子,并为 Mxr1p 作为巴斯德毕赤酵母多种代谢途径的全局调节因子的功能机制提供了新的见解。