Shi Lei, Wang Xiaolong, Wang Jinjia, Zhang Ping, Qi Fei, Cai Menghao, Zhang Yuanxing, Zhou Xiangshan
State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, 200237, China.
Shanghai Collaborative Innovation Center for Biomanufacturing, 130 Meilong Road, Shanghai, 200237, China.
Genes Genomics. 2018 Apr;40(4):399-412. doi: 10.1007/s13258-017-0641-5. Epub 2017 Dec 14.
Two catabolite repressor genes (MIG1 and MIG2) were previously identified in Pichia pastoris, and the derepression of alcohol oxidase (AOX) expression was realized in Δmig1 or Δmig1Δmig2 mutants grown in glycerol, but not in glucose. In this study, genome-wide RNA-seq analysis of Δmig1Δmig2 and the wild-type strain grown in glycerol revealed that the expression of numerous genes was greatly altered. Nearly 7% (357 genes) of approximately 5276 genes annotated in P. pastoris were significantly upregulated, with at least a two-fold differential expression in Δmig1Δmig2; the genes were mainly related to cell metabolism. Approximately 23% (1197 genes) were significantly downregulated; these were mainly correlated with the physiological characteristics of the cell. The methanol catabolism and peroxisome biogenesis pathways were remarkably enhanced, and the genes AOX1 and AOX2 were upregulated higher than 30-fold, which was consistent with the experimental results of AOX expression. The Mig proteins had a slight effect on autophagy when cells were grown in glycerol. The expression analysis of transcription factors showed that deletion of MIG1 and MIG2 significantly upregulated the binding of an essential transcription activator, Mit1p, with the AOX1 promoter, which suggested that Mig proteins might regulate the AOX1 promoter through the regulation of Mit1p. This work provides a reference for the further exploration of the methanol induction and catabolite repression mechanisms of AOX expression in methylotrophic yeasts.
先前在巴斯德毕赤酵母中鉴定出两个分解代谢物阻遏基因(MIG1和MIG2),在甘油中生长的Δmig1或Δmig1Δmig2突变体中实现了醇氧化酶(AOX)表达的去阻遏,但在葡萄糖中生长时未实现。在本研究中,对在甘油中生长的Δmig1Δmig2和野生型菌株进行全基因组RNA测序分析,结果显示众多基因的表达发生了极大改变。在巴斯德毕赤酵母中注释的约5276个基因中,近7%(357个基因)显著上调,在Δmig1Δmig2中的差异表达至少为两倍;这些基因主要与细胞代谢相关。约23%(1197个基因)显著下调;这些基因主要与细胞的生理特征相关。甲醇分解代谢和过氧化物酶体生物发生途径显著增强,AOX1和AOX2基因上调超过30倍,这与AOX表达的实验结果一致。当细胞在甘油中生长时,Mig蛋白对自噬有轻微影响。转录因子的表达分析表明,MIG1和MIG2的缺失显著上调了必需转录激活因子Mit1p与AOX1启动子的结合,这表明Mig蛋白可能通过调控Mit1p来调节AOX1启动子。这项工作为进一步探索甲基营养型酵母中AOX表达的甲醇诱导和分解代谢物阻遏机制提供了参考。