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Identification of crucial roles of transcription factor IhfA on high production of free fatty acids in Escherichia coli
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作者 Lixia Fang Ziyi Han +4 位作者 Xueru Feng xueyan hao Mengxiao Liu hao Song Yingxiu Cao 《Synthetic and Systems Biotechnology》 SCIE 2024年第1期144-151,共8页
Transcription factor engineering has unique advantages in improving the performance of microbial cell factories due to the global regulation of gene transcription.Omics analyses and reverse engineering enable learning... Transcription factor engineering has unique advantages in improving the performance of microbial cell factories due to the global regulation of gene transcription.Omics analyses and reverse engineering enable learning and subsequent incorporation of novel design strategies for further engineering.Here,we identify the role of the global regulator IhfA for overproduction of free fatty acids(FFAs)using CRISPRi-facilitated reverse engineering and cellular physiological characterization.From the differentially expressed genes in the ihfAL􀀀strain,a total of 14 beneficial targets that enhance FFAs production by above 20% are identified,which involve membrane function,oxidative stress,and others.For membrane-related genes,the engineered strains obtain lower cell surface hydrophobicity and increased average length of membrane lipid tails.For oxidative stress-related genes,the engineered strains present decreased reactive oxygen species(ROS)levels.These gene modulations enhance cellular robustness and save cellular resources,contributing to FFAs production.This study provides novel targets and strategies for engineering microbial cell factories with improved FFAs bioproduction. 展开更多
关键词 Free fatty acids CRISPRi ihfA Cell membrane ROS
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大肠杆菌合成中链脂肪酸研究进展 被引量:2
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作者 房立霞 冯雪茹 +4 位作者 刘夺 韩紫依 刘梦晓 郝雪雁 曹英秀 《科学通报》 EI CAS CSCD 北大核心 2022年第25期3014-3023,共10页
中链脂肪酸(medium-chain fatty acids,MCFAs)及其衍生化学品在能源、医药、化工等诸多领域具有重要的应用价值.微生物发酵生产MCFAs是一条绿色、可持续的路线.大肠杆菌(Escherichia coli)可利用天然脂肪酸合成(fatty acid biosynthesis... 中链脂肪酸(medium-chain fatty acids,MCFAs)及其衍生化学品在能源、医药、化工等诸多领域具有重要的应用价值.微生物发酵生产MCFAs是一条绿色、可持续的路线.大肠杆菌(Escherichia coli)可利用天然脂肪酸合成(fatty acid biosynthesis,FAB)路径和逆向β氧化(reversedβ-oxidation,RBO)路径合成MCFAs.MCFAs生产存在链长难控制、合成效率低、细胞损伤大等问题.近年来,工程大肠杆菌合成MCFAs取得了重大进展.通过链长控制蛋白的筛选与改造,MCFAs合成特异性得以提高;通过增加前体供应和强化产物释放,对合成路径进行“推-拉”,MCFAs合成效率得以改善;通过膜工程改造、应激响应调控及适应性进化,工程菌株对MCFAs的耐受性得以增强.本文基于大肠杆菌合成MCFAs的两种路径,系统综述了近年来控制产物链长、优化合成路径和增强细胞耐受的工程化策略,并展望了后续改善MCFAs合成的研究方向. 展开更多
关键词 大肠杆菌 中链脂肪酸 代谢工程 链长 耐受
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