Odorzynski T W, Light A
J Biol Chem. 1979 May 25;254(10):4291-5.
The mixed disulfide of bovine trypsinogen and glutathione refolded with high yields at protein concentrations of 20 microgram/ml or less, at 4-25 degrees C, pH 8.0 to 8.7, in the presence of 3 to 6 mM cysteine under anaerobic conditions. The regenerated protein behaved as native trypsinogen as judged by gel exclusion chromatography, isoelectric focusing, and activation with bovine enterokinase or trypsin. However, refolded samples that were quenched with iodoacetate and analyzed by disc gel electrophoresis formed two components corresponding to trypsinogen and S-(carboxymethylcysteine)2-(179-203)-trypsinogen. The use of cysteine as a disulfide interchange catalyst caused reduction of the 179 to 203 disulfide bond, and quenching of the refolding mixture with iodoacetate produced the carboxymethylated derivative. The overall yield of the regenerated product was 70% and the half-time at 4 degrees C was 55 min.
牛胰蛋白酶原与谷胱甘肽的混合二硫化合物在厌氧条件下,于4至25摄氏度、pH值8.0至8.7、存在3至6 mM半胱氨酸的情况下,在蛋白质浓度为20微克/毫升或更低时能以高产率重折叠。通过凝胶排阻色谱法、等电聚焦以及用牛肠激酶或胰蛋白酶激活来判断,再生后的蛋白质表现为天然胰蛋白酶原。然而,用碘乙酸淬灭并重通过圆盘凝胶电泳分析的重折叠样品形成了两个组分,分别对应胰蛋白酶原和S-(羧甲基半胱氨酸)2-(179 - 203)-胰蛋白酶原。使用半胱氨酸作为二硫键交换催化剂导致179至203位二硫键还原,用碘乙酸淬灭重折叠混合物产生了羧甲基化衍生物。再生产物的总产率为70%,在4摄氏度下的半衰期为55分钟。