Qi Kai, Zhong Jian-Jiang, Xia Xiao-Xia
State Key Laboratory of Bioreactor Engineering, School of Biotechnology, East China University of Science and Technology, Shanghai, China.
State Key Laboratory of Bioreactor Engineering, School of Biotechnology, East China University of Science and Technology, Shanghai, China State Key Laboratory of Microbial Metabolism, and Laboratory of Molecular Biochemical Engineering, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China
Appl Environ Microbiol. 2014 Jul;80(13):3879-87. doi: 10.1128/AEM.00854-14. Epub 2014 Apr 18.
Pichia guilliermondii is a Crabtree-negative yeast that does not normally exhibit respirofermentative metabolism under aerobic conditions, and methods to trigger this metabolism may have applications for physiological study and industrial applications. In the present study, CAT8, which encodes a putative global transcriptional activator, was disrupted in P. guilliermondii. This yeast's ethanol titer increased by >20-fold compared to the wild type (WT) during aerobic fermentation using glucose. A comparative transcriptional analysis indicated that the expression of genes in the tricarboxylic acid cycle and respiratory chain was repressed in the CAT8-disrupted (ΔCAT8) strain, while the fermentative pathway genes were significantly upregulated. The respiratory activities in the ΔCAT8 strain, indicated by the specific oxygen uptake rate and respiratory state value, decreased to one-half and one-third of the WT values, respectively. In addition, the expression of HAP4, a transcriptional respiratory activator, was significantly repressed in the ΔCAT8 strain. Through disruption of HAP4, the ethanol production of P. guilliermondii was also increased, but the yield and titer were lower than that in the ΔCAT8 strain. A further transcriptional comparison between ΔCAT8 and ΔHAP4 strains suggested a more comprehensive reprogramming function of Cat8 in the central metabolic pathways. These results indicated the important role of CAT8 in regulating the glucose metabolism of P. guilliermondii and that the regulation was partially mediated by repressing HAP4. The strategy proposed here might be applicable to improve the aerobic fermentation capacity of other Crabtree-negative yeasts.
季也蒙毕赤酵母是一种克勒勃屈利阴性酵母,在有氧条件下通常不会表现出呼吸发酵代谢,而触发这种代谢的方法可能在生理学研究和工业应用中具有应用价值。在本研究中,编码一种假定的全局转录激活因子的CAT8在季也蒙毕赤酵母中被破坏。与野生型(WT)相比,在使用葡萄糖进行有氧发酵期间,这种酵母的乙醇滴度增加了20倍以上。一项比较转录分析表明,三羧酸循环和呼吸链中的基因表达在CAT8破坏(ΔCAT8)菌株中受到抑制,而发酵途径基因则显著上调。由特定氧摄取率和呼吸状态值表示的ΔCAT8菌株中的呼吸活性分别降至WT值的二分之一和三分之一。此外,转录呼吸激活因子HAP4的表达在ΔCAT8菌株中显著受到抑制。通过破坏HAP4,季也蒙毕赤酵母的乙醇产量也有所增加,但产量和滴度低于ΔCAT8菌株。ΔCAT8和ΔHAP4菌株之间的进一步转录比较表明,Cat8在中心代谢途径中具有更全面的重编程功能。这些结果表明CAT8在调节季也蒙毕赤酵母的葡萄糖代谢中起重要作用,并且这种调节部分是通过抑制HAP4介导的。这里提出的策略可能适用于提高其他克勒勃屈利阴性酵母的有氧发酵能力。