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Pseudomonas aeruginosa Directly Shunts β-Oxidation Degradation Intermediates into De Novo Fatty Acid Biosynthesis

机译:铜绿假单胞菌直接分流β-氧化降解中间体进入De Novo脂肪酸的生物合成

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摘要

We identified the fatty acid synthesis (FAS) initiation enzyme in Pseudomonas aeruginosa as FabY, a β-ketoacyl synthase KASI/II domain-containing enzyme that condenses acetyl coenzyme A (acetyl-CoA) with malonyl-acyl carrier protein (ACP) to make the FAS primer β-acetoacetyl-ACP in the (Y. Yuan, M. Sachdeva, J. A. Leeds, and T. C. Meredith, J. Bacteriol. 194:5171-5184, 2012). Herein, we show that growth defects stemming from deletion of fabY can be suppressed by supplementation of the growth media with exogenous decanoate fatty acid, suggesting a compensatory mechanism. Fatty acids eight carbons or longer rescue growth by generating acyl coenzyme A (acyl-CoA) thioester β-oxidation degradation intermediates that are shunted into FAS downstream of FabY. Using a set of perdeuterated fatty acid feeding experiments, we show that the open reading frame PA3286 in P. aeruginosa PAO1 intercepts C8-CoA by condensation with malonyl-ACP to make the FAS intermediate β-keto decanoyl-ACP. This key intermediate can then be extended to supply all of the cellular fatty acid needs, including both unsaturated and saturated fatty acids, along with the 3-hydroxyl fatty acid acyl groups of lipopolysaccharide. Heterologous PA3286 expression in Escherichia coli likewise established the fatty acid shunt, and characterization of recombinant β-keto acyl synthase enzyme activity confirmed in vitro substrate specificity for medium-chain-length acyl CoA thioester acceptors. The potential for the PA3286 shunt in P. aeruginosa to curtail the efficacy of inhibitors targeting FabY, an enzyme required for FAS initiation in the absence of exogenous fatty acids, is discussed.
机译:我们确定了铜绿假单胞菌中的脂肪酸合成(FAS)起始酶为FabY,一种包含β-酮酰基合酶KASI / II结构域的酶,该酶可将乙酰辅酶A(acetyl-CoA)与丙二酰基-酰基载体蛋白(ACP)缩合。 (Y. Yuan,M.Sachdeva,JA Leeds,and TC Meredith,J.Bacteriol.194:5171-5184,2012)中的FAS引物β-乙酰乙酰基ACP。在本文中,我们表明,通过添加外源癸酸脂肪酸来补充生长培养基,可以抑制由于fabY缺失而引起的生长缺陷,这表明存在补偿机制。脂肪酸中的八个碳或八个以上的脂肪酸通过产生酰基辅酶A(酰基-CoA)硫酯β-氧化降解中间体而被挽救,这些中间体被分流到FabY下游的FAS中。使用一组全氘化脂肪酸进料实验,我们显示铜绿假单胞菌PAO1中的开放阅读框PA3286通过与丙二酰-ACP缩合而截获C8-CoA,从而制得FAS中间体β-酮癸酰-ACP。然后可以扩展该关键中间体以提供所有细胞脂肪酸需求,包括不饱和脂肪酸和饱和脂肪酸,以及脂多糖的3-羟基脂肪酸酰基。异源PA3286在大肠杆菌中的表达同样建立了脂肪酸分流器,重组β-酮基酰基合酶活性的表征证实了体外对中链长度酰基辅酶A硫酯受体的底物特异性。讨论了铜绿假单胞菌中PA3286分流器降低靶向FabY(在没有外源脂肪酸的情况下,FAS启动所需的酶)的抑制剂的功效的潜力。

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