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罗氏红球菌RHA1积累三酰甘油的无标记和氧化还原蛋白质组学分析

Label-free and redox proteomic analyses of the triacylglycerol-accumulating Rhodococcus jostii RHA1.

作者信息

Dávila Costa José Sebastián, Herrero O Marisa, Alvarez Héctor M, Leichert Lars

机构信息

Centro Regional de Investigación y Desarrollo Científico Tecnológico, Facultad de Ciencias Naturales, Universidad Nacional de la Patagonia, San Juan Bosco Km 4-Ciudad Universitaria, 9000 Comodoro Rivadavia (Chubut), Argentina.

Centro Regional de Investigación y Desarrollo Científico Tecnológico, Facultad de Ciencias Naturales, Universidad Nacional de la Patagonia, San Juan Bosco Km 4-Ciudad Universitaria, 9000 Comodoro Rivadavia (Chubut), Argentina Oil m&s, Av. Hipólito Yrigoyen 4250, 9000 Comodoro Rivadavia (Chubut), Argentina.

出版信息

Microbiology (Reading). 2015 Mar;161(Pt 3):593-610. doi: 10.1099/mic.0.000028. Epub 2015 Jan 6.

Abstract

The bacterium Rhodococcus jostii RHA1 synthesizes large amounts of triacylglycerols (TAGs) under conditions of nitrogen starvation. To better understand the molecular mechanisms behind this process, we performed proteomic studies in this oleaginous bacterium. Upon nitrogen starvation, we observed a re-routing of the carbon flux towards the formation of TAGs. Under these conditions, the cellular lipid content made up more than half of the cell's dry weight. On the proteome level, this coincided with a shift towards non-glycolytic carbohydrate-metabolizing pathways. These pathways (Entner-Doudoroff and pentose-phosphate shunt) contribute NADPH and precursors of glycerol 3-phosphate and acetyl-CoA to lipogenesis. The expression of proteins involved in the degradation of branched-chain amino acids and the methylmalonyl-CoA pathway probably provided propionyl-CoA for the biosynthesis of odd-numbered fatty acids, which make up almost 30 % of RHA1 fatty acid composition. Additionally, lipolytic and glycerol-degrading enzymes increased in abundance, suggesting a dynamic cycling of cellular lipids. Conversely, abundance of proteins involved in consuming intermediates of lipogenesis decreased. Furthermore, we identified another level of lipogenesis regulation through redox-mediated thiol modification in R. jostii. Enzymes affected included acetyl-CoA carboxylase and a β-ketoacyl-[acyl-carrier protein] synthase II (FabF). An integrative metabolic model for the oleaginous RHA1 strain is proposed on the basis of our results.

摘要

约氏红球菌RHA1在氮饥饿条件下会合成大量的三酰甘油(TAGs)。为了更好地理解这一过程背后的分子机制,我们对这种产油细菌进行了蛋白质组学研究。在氮饥饿时,我们观察到碳通量重新导向TAGs的形成。在这些条件下,细胞脂质含量占细胞干重的一半以上。在蛋白质组水平上,这与向非糖酵解碳水化合物代谢途径的转变相吻合。这些途径(Entner-Doudoroff途径和磷酸戊糖途径)为脂肪生成提供NADPH以及3-磷酸甘油和乙酰辅酶A的前体。参与支链氨基酸降解和甲基丙二酰辅酶A途径的蛋白质的表达可能为奇数脂肪酸的生物合成提供丙酰辅酶A,奇数脂肪酸占RHA1脂肪酸组成的近30%。此外,脂解酶和甘油降解酶的丰度增加,表明细胞脂质存在动态循环。相反,参与消耗脂肪生成中间体的蛋白质丰度降低。此外,我们在约氏红球菌中发现了通过氧化还原介导的硫醇修饰进行脂肪生成调控的另一个层面。受影响的酶包括乙酰辅酶A羧化酶和β-酮酰基-[酰基载体蛋白]合酶II(FabF)。基于我们的研究结果,提出了产油RHA1菌株的综合代谢模型。

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