Steed P M, Lasala D, Liebman J, Wigg A, Clark K, Knap A K
Research Department, Novartis Pharmaceuticals, Summit, New Jersey 07901, USA.
Protein Sci. 1998 Sep;7(9):2033-7. doi: 10.1002/pro.5560070920.
The lysosomal cysteine protease cathepsin B has been studied intensely for many years because of its unique characteristics and its potential involvement in disease states. A reproducible, high yield expression system for active recombinant protein is key to biochemical and biophysical studies as well as rational drug design. Although several microbial and mammalian expression systems for recombinant human cathepsin B have been described, these have been limited by low or variable yields. Further, in some of these systems hyper-glycosylation of the enzyme near the active site affects its activity. We describe a baculovirus expression system and purification scheme that solve all of these problems. Yields of active, protected enzyme were reproducibly in excess of 25 mg/L. Since this protein was not hyper-glycosylated, it had greater activity than cathepsin B produced in yeast systems as indicated by a threefold increase in Kcat. In addition, the biophysical properties of the baculovirus-expressed cathepsin B, as measured by dynamic light scattering, were more amenable to crystallographic study since the data indicated proteins of more uniform size. Therefore, this system for the production of recombinant human cathepsin B constitutes a major improvement in both quantity and quality over those previously reported. Further, we demonstrate that the manner of expression and purification of this enzyme has profound effects on its kinetic and physical parameters.
由于其独特的特性以及可能参与疾病状态,溶酶体半胱氨酸蛋白酶组织蛋白酶B已经被深入研究多年。用于活性重组蛋白的可重现、高产量表达系统对于生化和生物物理研究以及合理的药物设计至关重要。尽管已经描述了几种用于重组人组织蛋白酶B的微生物和哺乳动物表达系统,但这些系统受到产量低或产量不稳定的限制。此外,在其中一些系统中,活性位点附近酶的过度糖基化会影响其活性。我们描述了一种杆状病毒表达系统和纯化方案,该方案解决了所有这些问题。活性、受保护酶的产量可重现地超过25mg/L。由于这种蛋白没有过度糖基化,与酵母系统中产生的组织蛋白酶B相比,它具有更高的活性,这表现为催化常数增加了三倍。此外,通过动态光散射测量,杆状病毒表达的组织蛋白酶B的生物物理性质更适合晶体学研究,因为数据表明蛋白大小更均匀。因此,这种用于生产重组人组织蛋白酶B的系统在产量和质量方面都比以前报道的系统有了重大改进。此外,我们证明这种酶的表达和纯化方式对其动力学和物理参数有深远影响。