Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, Jiangsu, China.
The Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, Jiangnan University, Wuxi, Jiangsu, China.
Biotechnol Bioeng. 2018 Feb;115(2):473-482. doi: 10.1002/bit.26477. Epub 2017 Nov 6.
Pyruvate is an important organic acid that plays a key role in the central metabolic pathway. Manipulating transporters is an efficient strategy to enhance production of target organic acids and a means to understand the effects of altered intracellular pyruvate content on global metabolic networks. Efforts have been made to manipulate mitochondrial pyruvate carrier (MPC) to transport pyruvate into different subcellular compartments in Candida glabrata to demonstrate the effects of the subcellular distribution of pyruvate on central carbon metabolism. By increasing the mitochondrial pyruvate content through enhancing the rate of pyruvate transport into mitochondria, a high central carbon metabolism rate, specific growth rate and specific pyruvate production rate were obtained. Comparing the intracellular pyruvate content of engineered and control strains showed that higher intracellular pyruvate levels were not conducive to improving pyruvate productivity or central carbon metabolism. Plasma membrane expression of MPCs significantly increased the expression levels of key rate-limiting glycolytic enzymes. Moreover, pyruvate production of CGΔura3-Sp-MPC1, CGΔura3-Sp-MPC2, and CGΔura3-Sp-MPC1-Sp-MPC2 increased 134.4%, 120.3%, and 30.0%, respectively. In conclusion, lower intracellular pyruvate content enhanced central carbon metabolism and provided useful clues for improving the production of other organic acids in microorganisms.
丙酮酸是一种重要的有机酸酸,在中心代谢途径中起着关键作用。操纵转运蛋白是提高目标有机酸产量的有效策略,也是了解细胞内丙酮酸含量变化对全局代谢网络影响的一种手段。人们一直致力于操纵线粒体丙酮酸载体(MPC),将丙酮酸运输入假丝酵母的不同亚细胞区室,以证明丙酮酸在亚细胞区室中的分布对中心碳代谢的影响。通过提高线粒体丙酮酸的含量,从而提高丙酮酸向线粒体的转运速率,获得了较高的中心碳代谢速率、比生长速率和比丙酮酸生产速率。比较工程菌株和对照菌株的细胞内丙酮酸含量表明,较高的细胞内丙酮酸水平不利于提高丙酮酸的生产力或中心碳代谢。MPC 在质膜上的表达显著增加了关键限速糖酵解酶的表达水平。此外,CGΔura3-Sp-MPC1、CGΔura3-Sp-MPC2 和 CGΔura3-Sp-MPC1-Sp-MPC2 的丙酮酸产量分别提高了 134.4%、120.3%和 30.0%。总之,较低的细胞内丙酮酸含量增强了中心碳代谢,为提高微生物中其他有机酸的生产提供了有用的线索。