Huang Jian-Feng, Zhang Bo, Shen Zhen-Yang, Liu Zhi-Qiang, Zheng Yu-Guo
1Key Laboratory of Bioorganic Synthesis of Zhejiang Province, College of Biotechnology and Bioengineering, Zhejiang University of Technology, Hangzhou, 310014 People's Republic of China.
2Engineering Research Center of Bioconversion and Bio-purification, Ministry of Education, Zhejiang University of Technology, Hangzhou, 310014 People's Republic of China.
3 Biotech. 2018 Jul;8(7):310. doi: 10.1007/s13205-018-1332-x. Epub 2018 Jul 9.
-succinyl-l-homoserine (OSH) is a promising platform chemical for the production of C4 chemicals with huge market potential which can be produced by fermentation from glucose. To construct a strain capable of producing OSH with high yield, the (encodes transcriptional repressor) and (encodes a subunit of dl-methionine transporter) were deleted in W3110 to obtain a strain ∆JI. Then, overexpression of (encodes bifunctional aspartate kinase/homoserine dehydrogenase II) and inactivation of (encodes cystathionine γ-synthase) were implemented in one step, and the OSH titer of the resulting strain ∆JIB Trc was dramatically increased to 7.30 g/L. The feedback regulation was further relieved by progressively overexpressing (encodes homoserine -succinyltransferase), (encodes l-methionine exporter), and (encodes bifunctional aspartate kinase/homoserine dehydrogenase I) to increase the metabolic flux from aspartate to OSH. The 100% rationally designed strain ∆JIB Trc/pTrc- -Trc- - produced 9.31 g/L OSH from 20 g/L glucose (0.466 g/g glucose) in batch fermentation, which represents the highest OSH yield from glucose reported to date. The culture profiles of the newly constructed strains were recorded to investigate their productive properties. The effects of l-methionine addition on the fermentation process of the optimal strain were also studied. Our results demonstrate that tuning the expression level of , inactivation of , and attenuation of feedback resistance of the crucial enzymes in the biosynthetic pathway are the key factors that impact the OSH production in .
琥珀酰-L-高丝氨酸(OSH)是一种具有巨大市场潜力的C4化学品生产的有前景的平台化学品,它可以通过葡萄糖发酵生产。为构建能够高产OSH的菌株,在大肠杆菌W3110中删除了metJ(编码转录阻遏物)和metQ(编码D-甲硫氨酸转运蛋白的一个亚基),以获得菌株ΔJI。然后,一步实现了asd(编码双功能天冬氨酸激酶/高丝氨酸脱氢酶II)的过表达和metB(编码胱硫醚γ-合酶)的失活,所得菌株ΔJIB Trc的OSH效价显著提高到7.30 g/L。通过逐步过表达metA(编码高丝氨酸琥珀酰转移酶)、ydeD(编码L-甲硫氨酸输出蛋白)和lysC(编码双功能天冬氨酸激酶/高丝氨酸脱氢酶I)进一步解除反馈调节,以增加从天冬氨酸到OSH的代谢通量。在分批发酵中,100%合理设计的菌株ΔJIB Trc/pTrc-metA-Trc-ydeD从20 g/L葡萄糖中产生了9.31 g/L OSH(0.466 g/g葡萄糖),这代表了迄今为止报道的从葡萄糖中获得的最高OSH产量。记录新构建菌株的培养概况以研究它们的生产特性。还研究了添加L-甲硫氨酸对最佳菌株发酵过程的影响。我们的结果表明,调节metA的表达水平、metB的失活以及生物合成途径中关键酶的反馈抗性减弱是影响大肠杆菌中OSH生产的关键因素。