van den Berg Stefan Pieter Hendrik, Zoumaro-Djayoon Adja, Yang Flora, Bokinsky Gregory
Department of Bionanoscience, Kavli Institute of Nanoscience, Delft University of Technology, Delft, The Netherlands.
FEBS Lett. 2025 Mar;599(5):667-681. doi: 10.1002/1873-3468.15092. Epub 2024 Dec 30.
Exogenous fatty acids are directly incorporated into bacterial membranes, heavily influencing cell envelope properties, antibiotic susceptibility, and bacterial ecology. Here, we quantify fatty acid biosynthesis metabolites and enzymes of the fatty acid synthesis pathway to determine how exogenous fatty acids inhibit fatty acid synthesis in Escherichia coli. We find that acyl-CoA synthesized from exogenous fatty acids rapidly increases concentrations of long-chain acyl-acyl carrier protein (acyl-ACP), which inhibits fatty acid synthesis initiation. Accumulation of long-chain acyl-ACP is caused by competition with acyl-CoA for phospholipid synthesis enzymes. Furthermore, we find that transcriptional regulation rebalances saturated and unsaturated acyl-ACP while maintaining overall expression levels of fatty acid synthesis enzymes. Rapid feedback inhibition of fatty acid synthesis by exogenous fatty acids thus allows E. coli to benefit from exogenous fatty acids while maintaining fatty acid synthesis capacity. We hypothesize that this indirect feedback mechanism is ubiquitous across bacterial species.
外源性脂肪酸直接掺入细菌膜中,对细胞包膜特性、抗生素敏感性和细菌生态学有重大影响。在此,我们对脂肪酸生物合成代谢物和脂肪酸合成途径的酶进行定量,以确定外源性脂肪酸如何抑制大肠杆菌中的脂肪酸合成。我们发现,由外源性脂肪酸合成的酰基辅酶A迅速增加了长链酰基酰基载体蛋白(酰基-ACP)的浓度,从而抑制脂肪酸合成的起始。长链酰基-ACP的积累是由于与酰基辅酶A竞争磷脂合成酶所致。此外,我们发现转录调控在维持脂肪酸合成酶总体表达水平的同时,重新平衡饱和与不饱和酰基-ACP。因此,外源性脂肪酸对脂肪酸合成的快速反馈抑制使大肠杆菌能够在维持脂肪酸合成能力的同时,从外源性脂肪酸中获益。我们推测这种间接反馈机制在所有细菌物种中普遍存在。