Jónsdóttir Gudrún, Bjarnason Jón Bragi, Gudmundsdóttir Agústa
Department of Food Science, University of Iceland, Science Institute, Vatnsmýrarvegi 16, IS-101 Reykjavík, Iceland.
Protein Expr Purif. 2004 Jan;33(1):110-22. doi: 10.1016/j.pep.2003.09.012.
Atlantic cod trypsin I is a cold-adapted proteolytic enzyme exhibiting approximately 20 times higher catalytic efficiency (kcat/KM) than its mesophilic bovine counterpart for the simple amide substrate BAPNA. In general, cold-adapted proteolytic enzymes are sensitive to autolytic degradation, thermal inactivation as well as molecular aggregation, even at temperatures as low as 18-25 degrees C which may explain the problems observed with their expression, activation, and purification. Prior to the data presented here, there have been no reports in the literature on the expression of psychrophilic or cold-adapted proteolytic enzymes from fish. Nevertheless, numerous cold-adapted proteolytic microbial enzymes have been successfully expressed in bacteria and yeast. This report describes successful expression, activation, and purification of the recombinant cod trypsin I in the His-Patch ThioFusion Escherichia coli expression system. The E. coli pThioHis expression vector used in the study enabled the formation of a fusion protein between a highly soluble fraction of HP-thioredoxin contained in the vector and the N-terminal end of the precursor form of cod trypsin I. The HP-thioredoxin part of the fusion protein binds to a metal-chelating ProBond column, which facilitated its purification. The cod trypsin I part of the purified fusion protein was released by proteolytic cleavage, resulting in concomitant activation of the recombinant enzyme. The recombinant cod trypsin I was purified to homogeneity on a trypsin-specific benzamidine affinity column. The identity of the recombinant enzyme was demonstrated by electrophoresis and chromatography.
大西洋鳕鱼胰蛋白酶I是一种冷适应蛋白水解酶,对于简单酰胺底物BAPNA,其催化效率(kcat/KM)比嗜温的牛胰蛋白酶高约20倍。一般来说,冷适应蛋白水解酶即使在低至18 - 25摄氏度的温度下也对自溶降解、热失活以及分子聚集敏感,这可能解释了在其表达、激活和纯化过程中所观察到的问题。在本文所展示的数据之前,文献中尚无关于鱼类嗜冷或冷适应蛋白水解酶表达的报道。然而,许多冷适应的微生物蛋白水解酶已在细菌和酵母中成功表达。本报告描述了重组鳕鱼胰蛋白酶I在His-Patch ThioFusion大肠杆菌表达系统中的成功表达、激活和纯化。研究中使用的大肠杆菌pThioHis表达载体能够在载体中高度可溶的HP-硫氧还蛋白部分与鳕鱼胰蛋白酶I前体形式的N末端之间形成融合蛋白。融合蛋白的HP-硫氧还蛋白部分与金属螯合ProBond柱结合,这有助于其纯化。纯化的融合蛋白中的鳕鱼胰蛋白酶I部分通过蛋白水解切割释放,从而使重组酶同时被激活。重组鳕鱼胰蛋白酶I在胰蛋白酶特异性苯甲脒亲和柱上纯化至同质。通过电泳和色谱法证明了重组酶的身份。