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Heterologously expressed acyl carrier protein domain of rat fatty acid synthase functions in Escherichia coli fatty acid synthase and Streptomyces coelicolor polyketide synthase systems [Review]

机译:大鼠脂肪酸合酶的异源表达酰基载体蛋白结构域在大肠杆菌脂肪酸合酶和链霉菌共色聚酮合酶系统中的作用[综述]

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Introduction: Fatty acid synthases (FASs) catalyze the de novo biosynthesis of long-chain saturated fatty acids by a process common to eubacteria and eukaryotes, using either a set of monofunctional proteins (Type II FAS) or a polypeptide containing several catalytic functions (Type I FAS). To compare the features of a Type I domain with its Type II counterpart we expressed and characterized an acyl carrier protein (ACP) domain of the Type I rat FAS. Results: An ACP domain of rat FAS was defined that allows expression of a small percentage of active holo-ACP both in Escherichia coil, increasing fivefold upon co-expression with an E. coil holo-ACP synthase, and in Streptomyces coelicolor. The rat ACP domain functions with some components of the E. coil FAS, and can replace the actinorhodin polyketide synthase (PKS) ACP in S. coelicolorA3(2), Purification of the rat ACP domain from E. coil resulted in loss of its functionality. Purified apo-ACP could be converted to its holo-form upon incubation with purified E. coli holo-ACP synthase in vitro, however, suggesting that the loss of functionality was not due to a conformational change, Conclusions: Functionality of the recombinant rat ACP was shown in distantly related and diverse enzyme systems, suggesting that Type I and Type II ACPs have a similar conformation. A procedure was described that might permit the production of rat FAS holo-ACP for structural and further biochemical characterization. [References: 65]
机译:简介:脂肪酸合酶(FASs)通过真细菌和真核生物共有的过程,使用一组单功能蛋白(II型FAS)或含有多种催化功能的多肽(Type)催化长链饱和脂肪酸的从头生物合成我FAS)。为了比较I型域与其II型对应域的特征,我们表达并表征了I型大鼠FAS的酰基载体蛋白(ACP)域。结果:定义了大鼠FAS的ACP结构域,该结构域允许在小肠埃希氏菌中表达少量的活性holo-ACP,与大肠杆菌E.coli holo-ACP合酶共表达后,以及在链霉菌中均表达五倍。大鼠ACP结构域与大肠杆菌FAS的某些组件一起起作用,并且可以替代大肠杆菌S. coelicolorA3(2)中的放线菌丝蛋白聚酮化合物合酶(PKS)ACP,从大肠杆菌中纯化大鼠ACP结构域导致其功能丧失。纯化的apo-ACP在体外与纯化的大肠杆菌holo-ACP合酶孵育后可转化为其全息形式,但是,这表明功能丧失不是由于构象变化所致。结论:重组大鼠ACP的功能在远距离相关的和多样化的酶系统中显示出这种结构,表明I型和II型ACP具有相似的构象。描述了可能允许生产大鼠FAS holo-ACP用于结构和进一步生化表征的程序。 [参考:65]

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