Plassmeier Jens, Li Youyuan, Rueckert Christian, Sinskey Anthony J
Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA; State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai 200237, PR China.
Metab Eng. 2016 Jan;33:86-97. doi: 10.1016/j.ymben.2015.11.002. Epub 2015 Nov 29.
In this study, we metabolically engineered Corynebacterium glutamicum to produce triacylglycerols (TAGs) by completing and constraining a de novo TAG biosynthesis pathway. First, the plasmid pZ8_TAG4 was constructed which allows the heterologous expression of four genes: three (atf1 and atf2, encoding the diacylglycerol acyltransferase; pgpB, encoding the phosphatidic acid phosphatase) to complete the TAG biosynthesis pathway, and one gene (tadA) for lipid body assembly. Second, we applied four metabolic strategies to increase TAGs accumulation: (i) boosting precursor supply by heterologous expression of tesA (encoding thioesterase to form free fatty acid to reduce the feedback inhibition by acyl-ACP) and fadD (encoding acyl-CoA synthetase to enhance acyl-CoA supply), (ii) reduction of TAG degradation and precursor consumption by deleting four cellular lipases (cg0109, cg0110, cg1676 and cg1320) and the diacylglycerol kinase (cg2849), (iii) enhancement of fatty acid biosynthesis by deletion of fasR (cg2737, TetR-type transcriptional regulator of genes for the fatty acid biosynthesis), and (iv) elimination of the observed by-product formation of organic acids by blocking the acetic acid (pqo) and lactic acid production (ldh) pathways. The final strain (CgTesRtcEfasEbp/pZ8_TAG4) achieved a 7.5% yield of total fatty acids (2.38 ± 0.05 g/L intracellular fatty acids and 0.64 ± 0.09 g/L extracellular fatty acids) from 4% glucose in shake flasks after process optimization. This corresponds to maximum intracellular fatty acids content of 17.8 ± 0.5% of the dry cell.
在本研究中,我们通过构建并限制全新的三酰甘油(TAG)生物合成途径,对谷氨酸棒杆菌进行代谢工程改造以生产TAG。首先,构建了质粒pZ8_TAG4,其允许四个基因的异源表达:三个基因(atf1和atf2,编码二酰甘油酰基转移酶;pgpB,编码磷脂酸磷酸酶)用于完成TAG生物合成途径,以及一个用于脂滴组装的基因(tadA)。其次,我们应用了四种代谢策略来增加TAG的积累:(i)通过tesA(编码硫酯酶以形成游离脂肪酸以减少酰基-ACP的反馈抑制)和fadD(编码酰基辅酶A合成酶以增强酰基辅酶A供应)的异源表达来增加前体供应,(ii)通过删除四种细胞脂肪酶(cg0109、cg0110、cg1676和cg1320)和二酰甘油激酶(cg2849)来减少TAG降解和前体消耗,(iii)通过删除fasR(cg2737,脂肪酸生物合成基因的TetR型转录调节因子)来增强脂肪酸生物合成,以及(iv)通过阻断乙酸(pqo)和乳酸产生(ldh)途径来消除观察到的有机酸副产物形成。经过工艺优化后,最终菌株(CgTesRtcEfasEbp/pZ8_TAG4)在摇瓶中从4%的葡萄糖中获得了7.5%的总脂肪酸产量(2.38±0.05 g/L细胞内脂肪酸和0.64±0.09 g/L细胞外脂肪酸)。这相当于细胞内脂肪酸含量最高可达干细胞的17.8±0.5%。