Marine Bioengineering Group, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Appl Microbiol Biotechnol. 2018 Apr;102(7):3173-3182. doi: 10.1007/s00253-018-8770-6. Epub 2018 Feb 22.
Medium-chain fatty acids have attracted significant attention as sources of biofuels in recent years. Acyl-ACP thioesterase, which is considered as the key enzyme to determine the carbon chain length, catalyzes the termination of de novo fatty acid synthesis. Although recombinant medium-chain acyl-ACP thioesterase (TE) affects the fatty acid profile in heterologous cells, tailoring of the fatty acid composition merely by engineering a specific TE is still intractable. In this study, the activity of a C8-C10-specific thioesterase FatB2 from Cuphea hookeriana on C10-ACP was quantified twice as high as that on C8-ACP based on a synthetic C8-C16 acyl-ACP pool in vitro. Whereas in vivo, it was demonstrated that ChFatB2 preferred to accumulate C8 fatty acids with 84.9% composition in the ChFatB2-engineered E. coli strain. To achieve C10 fatty acid production, ChFatB2 was rationally tuned based on structural investigation and enzymatic analysis. An I198E mutant was identified to redistribute the C8-ACP flow, resulting in C10 fatty acid being produced as the principal component at 57.6% of total fatty acids in vivo. It was demonstrated that the activity of TE relative to β-ketoacyl-ACP synthases (KAS) directly determined the fatty acid composition. Our results provide a prospective strategy in tailoring fatty acid synthesis by tuning of TE activities based on TE-ACP interaction.
近年来,中链脂肪酸作为生物燃料的来源引起了人们的极大关注。酰基辅酶 A 硫酯酶被认为是决定碳链长度的关键酶,它催化新合成脂肪酸合成的终止。虽然重组中链酰基辅酶 A 硫酯酶(TE)会影响异源细胞中的脂肪酸谱,但仅通过工程特定的 TE 来调整脂肪酸组成仍然是困难的。在这项研究中,根据体外合成的 C8-C16 酰基辅酶 A 池,来自 Cuphea hookeriana 的 C8-C10 特异性硫酯酶 FatB2 对 C10-ACP 的活性是对 C8-ACP 的两倍。然而,在体内,证明 ChFatB2 更倾向于在 ChFatB2 工程化的大肠杆菌菌株中积累 84.9%组成的 C8 脂肪酸。为了实现 C10 脂肪酸的生产,根据结构研究和酶分析对 ChFatB2 进行了合理的调整。鉴定出一个 I198E 突变体,它可以重新分配 C8-ACP 流,导致 C10 脂肪酸作为主要成分在体内产生,占总脂肪酸的 57.6%。结果表明,TE 的活性相对于β-酮酰基辅酶 A 合成酶(KAS)直接决定了脂肪酸的组成。我们的结果提供了一种有前景的策略,即通过调整 TE-ACP 相互作用来调整 TE 的活性,从而定制脂肪酸的合成。