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In Vivo Enzyme Immobilization by Inclusion Body Display

机译:通过包涵体展示体内酶固定化

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A novel strategy for in vivo immobilization of enzymes on the surfaces of inclusion bodies has been established. It relies on expression in Escherichia coli of the polyhydroxybutyrate synthase PhaC from Cupriavidus necator , which carries at its amino terminus an engineered negatively charged α-helical coil (Ecoil) and forms inclusion bodies upon high-level expression. Coexpression in the same cell of galactose oxidase (GOase) from Fusarium spp. carrying a carboxy-terminal positively charged coil (lysine-rich coil [Kcoil]) sequence results in heterodimeric coiled-coil formation in vivo and in the capture of the enzyme in active form on the surface of the inclusion body particle. These round-shaped enzyme-decorated microparticles, with sizes of approximately 0.7 μm, can be isolated from lysed cells simply by centrifugation. The cost-effective one-step generation and isolation of enzymes immobilized on inclusion body particles may become useful for various applications in bioprocessing and biotransformation.
机译:已经建立了一种在体内将酶固定在包涵体表面上的新策略。它依赖于来自Cupriavidus necator的多羟基丁酸合酶PhaC在大肠杆菌中的表达,该酶在其氨基末端带有经过工程改造的带负电的α螺旋线圈(Ecoil),并在高水平表达时形成包涵体。镰刀菌属半乳糖氧化酶(GOase)在同一细胞中共表达。携带带有羧基末端带正电荷的线圈(富含赖氨酸的线圈[Kcoil])的序列会导致体内异二聚体卷曲螺旋的形成,并以活性形式捕获酶在包涵体颗粒表面。这些圆形的,装饰有酶的微粒(大小约为0.7μm)可以通过离心从裂解的细胞中分离出来。具有成本效益的一步生成和固定在包涵体颗粒上的酶的分离对于生物加工和生物转化中的各种应用可能变得有用。

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