Department of Microbiology, Basic Medical Sciences, Dalian Medical University, 9 Western Section, Lvshun South Road, Lvshunkou District, Dalian, 116044, China.
Department of Biosciences, Faculty of Science, Barrett Hodgson University, Karachi, Pakistan.
Appl Microbiol Biotechnol. 2018 Mar;102(5):2363-2377. doi: 10.1007/s00253-018-8754-6. Epub 2018 Jan 31.
The formation of inclusion bodies (IBs) is considered as an Achilles heel of heterologous protein expression in bacterial hosts. Wide array of techniques has been developed to recover biochemically challenging proteins from IBs. However, acquiring the active state even from the same protein family was found to be an independent of single established method. Here, we present a new strategy for the recovery of wide sub-classes of recombinant protein from harsh IBs. We found that numerous methods and their combinations for reducing IB formation and producing soluble proteins were not effective, if the inclusion bodies were harsh in nature. On the other hand, different practices with mild solubilization buffers were able to solubilize IBs completely, yet the recovery of active protein requires large screening of refolding buffers. With the integration of previously reported mild solubilization techniques, we proposed an improved method, which comprised low sarkosyl concentration, ranging from 0.05 to 0.1% coupled with slow freezing (- 1 °C/min) and fast thaw (room temperature), resulting in greater solubility and the integrity of solubilized protein. Dilution method was employed with single buffer to restore activity for every sub-class of recombinant protein. Results showed that the recovered protein's activity was significantly higher compared with traditional solubilization/refolding approach. Solubilization of IBs by the described method was proved milder in nature, which restored native-like conformation of proteins within IBs.
包涵体(IBs)的形成被认为是细菌宿主中异源蛋白表达的一个难题。已经开发了广泛的技术来从 IBs 中回收具有挑战性的生物化学蛋白。然而,即使从同一蛋白家族中获得活性状态也被发现是独立于单一已建立的方法。在这里,我们提出了一种从苛刻的 IBs 中回收广泛的重组蛋白亚类的新策略。我们发现,如果包涵体的性质很苛刻,那么许多减少包涵体形成和生产可溶性蛋白的方法及其组合都无效。另一方面,温和的溶解缓冲液的不同实践能够完全溶解 IBs,但活性蛋白的回收需要大量筛选复性缓冲液。通过整合之前报道的温和溶解技术,我们提出了一种改进的方法,该方法包括低 Sarkosyl 浓度(范围为 0.05 至 0.1%),与缓慢冷冻(-1°C/min)和快速解冻(室温)相结合,从而提高了溶解蛋白的溶解度和完整性。对于每一种重组蛋白的亚类,都采用稀释法来恢复其活性。结果表明,与传统的溶解/复性方法相比,回收的蛋白的活性显著提高。所描述的方法溶解 IBs 的性质更温和,能够恢复 IBs 中蛋白的天然构象。