Fischer B E, Mitterer A, Schlokat U, Grillberger L, Reiter M, Mundt W, Dorner F, Eibl J
Biomedical Research Center, Immuno AG, Uferstrasse 15, Orth a.d. Donau, A-2304, Austria.
Protein Expr Purif. 1996 Sep;8(2):167-74. doi: 10.1006/prep.1996.0089.
A simple and efficient activation-affinity purification system was developed to obtain thrombin from recombinant CHO cells expressing human prothrombin. In this method, a controllable process for the activation of recombinant prothrombin is directly coupled with a purification strategy for the recombinant thrombin generated. At a constant flow rate and with a contact time limited to few seconds, recombinant prothrombin was filtered through immobilized trypsin. In a closed flow system, the recombinant thrombin generated was filtered through newly designed thrombin-specific affinity gels. Hirudin, the most specific thrombin inhibitor, and hirudin-based peptides were covalently immobilized to Sepharose, thus creating thrombin-specific affinity gels that immediately absorb the thrombin generated from the activation mixture. Prothrombin and incompletely activated molecules did not bind to the affinity gel and were recirculated for a further activation cycle. Due to the specificity of the affinity gels for thrombin and the elimination of thrombin from the activation mixture, proteolytic degradation and autocatalytic inactivation of the recombinant thrombin was prevented. Recombinant thrombin was isolated from the hirudin-based affinity gels by chaotrope salt elution, resulting in high yields of highly pure, active thrombin. Affinity purification of thrombin was not deleteriously affected by contamination of the starting material with other proteins. Activation and affinity purification were equally effective for recombinant and human plasma-derived prothrombin as well as for human and recombinant thrombin.
开发了一种简单高效的激活-亲和纯化系统,用于从表达人凝血酶原的重组CHO细胞中获得凝血酶。在该方法中,重组凝血酶原的可控激活过程直接与所产生的重组凝血酶的纯化策略相结合。在恒定流速下,将接触时间限制在几秒内,使重组凝血酶原通过固定化胰蛋白酶过滤。在封闭的流动系统中,所产生的重组凝血酶通过新设计的凝血酶特异性亲和凝胶过滤。水蛭素(最特异的凝血酶抑制剂)和基于水蛭素的肽被共价固定在琼脂糖上,从而制备出能立即吸附激活混合物中所产生凝血酶的凝血酶特异性亲和凝胶。凝血酶原和未完全激活的分子不与亲和凝胶结合,并被循环用于进一步的激活循环。由于亲和凝胶对凝血酶的特异性以及从激活混合物中去除了凝血酶,从而防止了重组凝血酶的蛋白水解降解和自催化失活。通过离液盐洗脱从基于水蛭素的亲和凝胶中分离出重组凝血酶,从而获得了高产量的高纯度活性凝血酶。起始原料被其他蛋白质污染对凝血酶的亲和纯化没有不利影响。激活和亲和纯化对重组和人血浆来源的凝血酶原以及人凝血酶和重组凝血酶同样有效。