Department of Life Sciences, Imperial College London, London, United Kingdom.
National Heart and Lung Institute, Imperial College London, London, United Kingdom.
PLoS One. 2021 Oct 15;16(10):e0258270. doi: 10.1371/journal.pone.0258270. eCollection 2021.
Chemokines play diverse and fundamental roles in the immune system and human disease, which has prompted their structural and functional characterisation. Production of recombinant chemokines that are folded and bioactive is vital to their study but is limited by the stringent requirements of a native N-terminus for receptor activation and correct disulphide bonding required to stabilise the chemokine fold. Even when expressed as fusion proteins, overexpression of chemokines in E. coli tends to result in the formation of inclusion bodies, generating the additional steps of solubilisation and refolding. Here we present a novel method for producing soluble chemokines in relatively large amounts via a simple two-step purification procedure with no requirements for refolding. CXCL8 produced by this method has the correct chemokine fold as determined by NMR spectroscopy and in chemotaxis assays was indistinguishable from commercially available chemokines. We believe that this protocol significantly streamlines the generation of recombinant chemokines.
趋化因子在免疫系统和人类疾病中发挥着多样而基本的作用,这促使人们对其结构和功能进行了研究。为了研究趋化因子,需要生产具有正确折叠和生物活性的重组趋化因子,但这受到受体激活所需的严格的天然 N 端要求以及稳定趋化因子折叠所需的正确二硫键结合的限制。即使作为融合蛋白表达,趋化因子在大肠杆菌中的过度表达往往会导致包涵体的形成,从而产生额外的溶解和重折叠步骤。在这里,我们提出了一种通过简单的两步纯化程序在相对大量生产可溶性趋化因子的新方法,该方法不需要重折叠。通过这种方法产生的 CXCL8 通过 NMR 光谱和趋化性测定确定具有正确的趋化因子折叠,与市售的趋化因子无法区分。我们相信,该方案大大简化了重组趋化因子的生成。