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Recombinant Expression and Purification of T4 Phage Hoc, Soc, gp23, gp24 Proteins in Native Conformations with Stability Studies

机译:T4噬菌体Hoc,Soc,gp23,gp24蛋白在天然构象中的重组表达和纯化及稳定性研究

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摘要

Understanding the biological activity of bacteriophage particles is essential for rational design of bacteriophages with defined pharmacokinetic parameters and to identify the mechanisms of immunobiological activities demonstrated for some bacteriophages. This work requires highly purified preparations of the individual phage structural proteins, possessing native conformation that is essential for their reactivity, and free of incompatible biologically active substances such as bacterial lipopolysaccharide (LPS). In this study we describe expression in E. coli and purification of four proteins forming the surface of the bacteriophage T4 head: gp23, gp24, gphoc and gpsoc. We optimized protein expression using a set of chaperones for effective production of soluble proteins in their native conformations. The assistance of chaperones was critical for production of soluble gp23 (chaperone gp31 of T4 phage) and of gpsoc (chaperone TF of E. coli). Phage head proteins were purified in native conditions by affinity chromatography and size-exclusion chromatography. Two-step LPS removal allowed immunological purity grade with the average endotoxin activity less than 1 unit per ml of protein preparation. The secondary structure and stability of the proteins were studied using circular dichroism (CD) spectrometry, which confirmed that highly purified proteins preserve their native conformations. In increasing concentration of a denaturant (guanidine hydrochloride), protein stability was proved to increase as follows: gpsoc, gp23, gphoc. The denaturation profile of gp24 protein showed independent domain unfolding with the most stable larger domain. The native purified recombinant phage proteins obtained in this work were shown to be suitable for immunological experiments in vivo and in vitro.
机译:了解噬菌体颗粒的生物学活性对于合理设计具有确定药代动力学参数的噬菌体,以及确定某些噬菌体的免疫生物学活性机制至关重要。这项工作需要高度纯化的单个噬菌体结构蛋白制剂,它们具有对其反应至关重要的天然构象,并且不含不相容的生物活性物质,例如细菌脂多糖(LPS)。在这项研究中,我们描述了在大肠杆菌中的表达以及形成噬菌体T4头表面的四种蛋白质的纯化:gp23,gp24,gphoc和gpsoc。我们使用一组伴侣蛋白优化蛋白质表达,以有效产生天然构型的可溶性蛋白质。伴侣的协助对于产生可溶性gp23(T4噬菌体的伴侣gp31)和gpsoc(大肠杆菌的伴侣TF)至关重要。噬菌体头蛋白在天然条件下通过亲和色谱和尺寸排阻色谱纯化。两步LPS去除可实现免疫纯度等级,平均内毒素活性低于每毫升蛋白质制剂1个单位。使用圆二色性(CD)光谱研究了蛋白质的二级结构和稳定性,这证实了高度纯化的蛋白质保留了其天然构象。随着变性剂(盐酸胍)浓度的增加,蛋白质稳定性被证明增加如下:gpsoc,gp23,gphoc。 gp24蛋白的变性图谱显示独立的结构域展开,具有最稳定的较大结构域。这项工作中获得的天然纯化的重组噬菌体蛋白显示适用于体内和体外的免疫学实验。

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