Department of Chemistry, University of Nebraska-Lincoln, Lincoln, Nebraska 68588-0304, United States.
Nebraska Center for Integrated Biomolecular Communication, University of Nebraska-Lincoln, Lincoln, Nebraska 68588-0304, United States.
J Am Chem Soc. 2022 Nov 23;144(46):21157-21173. doi: 10.1021/jacs.2c08238. Epub 2022 Nov 11.
The mechanism of action (MoA) of a clickable fatty acid analogue 8-(2-cyclobuten-1-yl)octanoic acid (DA-CB) has been investigated for the first time. Proteomics, metabolomics, and lipidomics were combined with a network analysis to investigate the MoA of DA-CB against (). The metabolomics results showed that DA-CB has a general MoA related to that of ethionamide (ETH), a mycolic acid inhibitor that targets enoyl-ACP reductase (InhA), but DA-CB likely inhibits a step downstream from InhA. Our combined multi-omics approach showed that DA-CB appears to disrupt the pathway leading to the biosynthesis of mycolic acids, an essential mycobacterial fatty acid for both and (). DA-CB decreased keto-meromycolic acid biosynthesis. This intermediate is essential in the formation of mature mycolic acid, which is a key component of the mycobacterial cell wall in a process that is catalyzed by the essential polyketide synthase Pks13 and the associated ligase FadD32. The multi-omics analysis revealed further collateral alterations in bacterial metabolism, including the overproduction of shorter carbon chain hydroxy fatty acids and branched chain fatty acids, alterations in pyrimidine metabolism, and a predominate downregulation of proteins involved in fatty acid biosynthesis. Overall, the results with DA-CB suggest the exploration of this and related compounds as a new class of tuberculosis (TB) therapeutics. Furthermore, the clickable nature of DA-CB may be leveraged to trace the cellular fate of the modified fatty acid or any derived metabolite or biosynthetic intermediate.
首次研究了一种可点击的脂肪酸类似物 8-(2-环丁烯-1-基)辛酸 (DA-CB) 的作用机制。通过蛋白质组学、代谢组学和脂质组学与网络分析相结合,研究了 DA-CB 对 (). 的作用机制。代谢组学结果表明,DA-CB 具有与乙硫异烟胺 (ETH) 相似的一般作用机制,ETH 是一种针对烯酰-ACP 还原酶 (InhA) 的类脂酸抑制剂,但 DA-CB 可能抑制 InhA 下游的一个步骤。我们的综合多组学方法表明,DA-CB 似乎破坏了导致分枝菌酸生物合成的途径,分枝菌酸是 (). 和 () 分枝杆菌脂肪酸的必需成分。DA-CB 减少了酮基单酰基(myco)酸的生物合成。这种中间体是成熟分枝菌酸形成所必需的,成熟分枝菌酸是分枝杆菌细胞壁的关键组成部分,这一过程由必需的聚酮合酶 Pks13 和相关的连接酶 FadD32 催化。多组学分析进一步揭示了细菌代谢的其他代偿性改变,包括较短碳链羟基脂肪酸和支链脂肪酸的过度产生、嘧啶代谢的改变以及参与脂肪酸生物合成的蛋白质的主要下调。总的来说,DA-CB 的结果表明,探索这种和相关化合物作为一种新的结核病 (TB) 治疗方法。此外,DA-CB 的可点击性质可用于追踪修饰脂肪酸或任何衍生代谢物或生物合成中间体的细胞命运。