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A novel system for continuous protein refolding and on-line capture by expanded bed adsorption.

机译:一种通过扩展床吸附进行蛋白质连续折叠和在线捕获的新型系统。

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摘要

A novel two-step protein refolding strategy has been developed, where continuous renaturation-bydilution is followed by direct capture on an expanded bed adsorption (EBA) column. The performance of the overall process was tested on a N-terminally tagged version of human beta2-microglobulin (HAT-hbeta2m) both at analytical, small, and preparative scale. In a single scalable operation, extracted and denatured inclusion body proteins from Escherichia coli were continuously diluted into refolding buffer, using a short pipe reactor, allowing for a defined retention and refolding time, and then fed directly to an EBA column, where the protein was captured, washed, and finally eluted as soluble folded protein. Not only was the eluted protein in a correctly folded state, the purity of the HAThbeta2m was increased from 34% to 94%, and the product was concentrated sevenfold. The yield of the overall process was 45%, and the product loss was primarily a consequence of the refolding reaction rather than the EBA step. Full biological activity of HAT-hbeta2m was demonstrated after removal of the HAT-tag. In contrast to batch refolding, a continuous refolding strategy allows the conditions to be controlled and maintained throughout the process, irrespective of the batch size; i.e., it is readily scalable. Furthermore, the procedure is fast and tolerant toward aggregate formation, a common complication of in vitro protein refolding. In conclusion, this system represents a novel approach to small and preparative scale protein refolding, which should be applicable to many other proteins.
机译:已经开发了一种新颖的两步蛋白质复性策略,其中通过稀释进行连续复性,然后在膨胀床吸附(EBA)色谱柱上直接捕获。在人β2-微球蛋白(HAT-hbeta2m)的N末端标记版本上以分析,小型和制备规模测试了整个过程的性能。在一个可扩展的操作中,使用短管反应器将从大肠杆菌中提取并变性的包涵体蛋白连续稀释到重折叠缓冲液中,以确保确定的保留和重折叠时间,然后直接进料到EBA柱中捕获,洗涤,最后以可溶性折叠蛋白洗脱。洗脱的蛋白质不仅处于正确折叠状态,而且HAThbeta2m的纯度从34%增加到94%,并且产品浓缩了7倍。整个过程的产率为45%,产物损失主要是重折叠反应而不是EBA步骤的结果。去除HAT标签后,HAT-hbeta2m具有完全的生物学活性。与批量重折叠相比,连续重折叠策略可以在整个过程中控制和维持条件,而与批量大小无关。即易于扩展。此外,该过程快速且可耐受聚集体形成,这是体外蛋白质折叠的常见并发症。总之,该系统代表了一种用于制备小规模制备性蛋白质的新方法,该方法应适用于许多其他蛋白质。

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