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Novel strategy for production of aggregation-prone proteins and lytic enzymes in Escherichia coli based on an anchored periplasmic expression system

机译:基于锚定的周质表达系统在大肠埃希氏菌中产生易于聚集的蛋白质和裂解酶的新策略

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For over 2 decades, Escherichia coli has been successfully used for the production of various recombinant proteins. However, several technical limitations have influenced the extent of recombinant protein expression in the £. coli host because of (i) heterologous protein accumulation often observed in inactive inclusion bodies either in the cytoplasm or periplasm, or (ii) lytic activity of recombinant proteins, which causes cell lysis, that hinder high production yield. We developed a novel strategy for the efficient production of aggregation-prone proteins and lytic enzymes in the E. coli host. For this purpose, we used an anchored periplasmic expression (APEx) system, in which target proteins are produced in the periplasm and tethered on the inner membrane. Protein aggregation and lytic activity can be prevented through anchoring of individual proteins to the inner membrane. Two model proteins (aggregation-prone human leptin and lytic Pseudomonas fluorescens SIK Wl lipase) were examined, and both proteins were successfully produced and anchored to the inner membrane under optimized culture conditions. Upon expression, the inner membrane-anchored proteins were subjected to simple purification procedures; the proteins were confirmed to be of high purity and bioactivity.
机译:二十多年来,大肠杆菌已被成功用于生产各种重组蛋白。但是,一些技术限制影响了重组蛋白在£中的表达程度。大肠杆菌宿主的原因是:(i)经常在细胞质或周质的非活性包涵体中观察到异源蛋白积聚,或者(ii)引起细胞裂解的重组蛋白的裂解活性,从而阻碍了高产量。我们开发了一种新颖的策略,可在大肠杆菌宿主中高效生产易于凝集的蛋白质和裂解酶。为此,我们使用了锚定的周质表达(APEx)系统,在该系统中,周质中产生目标蛋白,并束缚在内膜上。通过将单个蛋白质锚定在内膜上可以防止蛋白质聚集和裂解活性。检查了两种模型蛋白(易于凝集的人瘦素和荧光假单胞菌SIK W1脂肪酶),两种蛋白均已成功制备,并在优化的培养条件下锚定在内膜上。表达后,将内膜锚定蛋白进行简单的纯化程序;蛋白质被证实具有高纯度和生物活性。

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