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Phylogenetic and experimental characterization of an acyl-ACP thioesterase family reveals significant diversity in enzymatic specificity and activity

机译:酰基ACP硫酯酶家族的系统发生和实验表征揭示了酶特异性和活性的显着多样性

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摘要

Background: Acyl-acyl carrier protein thioesterases (acyl-ACP TEs) catalyze the hydrolysis of the thioester bond that links the acyl chain to the sulfhydryl group of the phosphopantetheine prosthetic group of ACP. This reaction terminates acyl chain elongation of fatty acid biosynthesis, and in plant seeds it is the biochemical determinant of the fatty acid compositions of storage lipids.Results: To explore acyl-ACP TE diversity and to identify novel acyl ACP-TEs, 31 acyl-ACP TEs from wide-ranging phylogenetic sources were characterized to ascertain their in vivo activities and substrate specificities. These acylACP TEs were chosen by two different approaches: 1) 24 TEs were selected from public databases on the basis of phylogenetic analysis and fatty acid profile knowledge of their source organisms; and 2) seven TEs were molecularly cloned from oil palm (Elaeis guineensis), coconut (Cocos nucifera) and Cuphea viscosissima, organisms that produce medium-chain and short-chain fatty acids in their seeds. The in vivo substrate specificities of the acylACP TEs were determined in E. coli. Based on their specificities, these enzymes were clustered into three classes: 1) Class I acyl-ACP TEs act primarily on 14- and 16-carbon acyl-ACP substrates; 2) Class II acyl-ACP TEs have broad substrate specificities, with major activities toward 8- and 14-carbon acyl-ACP substrates; and 3) Class III acyl-ACP TEs act predominantly on 8-carbon acyl-ACPs. Several novel acyl-ACP TEs act on short-chain and unsaturated acylACP or 3-ketoacyl-ACP substrates, indicating the diversity of enzymatic specificity in this enzyme family.Conclusion: These acyl-ACP TEs can potentially be used to diversify the fatty acid biosynthesis pathway to produce novel fatty acids.
机译:背景:酰基-酰基载体蛋白硫酯酶(acyl-ACP TEs)催化将酰基链与ACP的磷酸泛肽辅基的巯基连接的硫酯键的水解。该反应终止了脂肪酸生物合成的酰基链延长,并且在植物种子中是储存脂质的脂肪酸组成的生化决定因素。结果:探索酰基-ACP TE的多样性并鉴定出新型的酰基ACP-TE,即31个酰基-CP。来自广泛的系统发育来源的ACP TE的特征是确定其体内活性和底物特异性。这些酰基ACP TEs通过两种不同的方法进行选择:1)根据系统进化分析和其来源生物的脂肪酸谱知识,从公共数据库中选择了24种TEs。 2)从油棕(Elaeis guineensis),椰子(Cocos nucifera)和Cuphea viscosissima(它们的种子中产生中链和短链脂肪酸)的生物分子中克隆了7个TE。在大肠杆菌中确定了酰基ACP TE的体内底物特异性。根据它们的特异性,这些酶分为三类:1)I类酰基ACP TE主要作用于14和16碳酰基ACP底物; 2)II类酰基ACP TE具有广泛的底物特异性,对8和14碳酰基ACP底物具有主要活性; 3)III类酰基ACP TE主要作用于8碳酰基ACP。几种新型的酰基ACP TE可以作用于短链和不饱和的酰基ACP或3-酮基酰基ACP底物上,表明该酶家族中酶特异性的多样性。结论:这些酰基ACP TE可以潜在地用于多样化脂肪酸的生物合成产生新脂肪酸的途径。

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