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一种冷适应鱼类胰蛋白酶在毕赤酵母中的表达。

Expression of a cold-adapted fish trypsin in Pichia pastoris.

作者信息

Macouzet Martin, Simpson Benjamin K, Lee Byong H

机构信息

Department of Food Science and Agricultural Chemistry, McGill University, Macdonald Campus, Ste-Anne-de-Bellevue, QC, Canada.

出版信息

FEMS Yeast Res. 2005 Jun;5(9):851-7. doi: 10.1016/j.femsyr.2005.02.007. Epub 2005 Apr 16.

Abstract

Trypsin is a highly valuable protease that has many industrial and biomedical applications. The growing demand for non-animal sources of the enzyme and for trypsins with special properties has driven the interest to clone and express this protease in microorganisms. Reports about expression of recombinant trypsins show wide differences in the degree of success and are contained mainly in patent applications, which disregard the difficulties associated with the developments. Although the yeast Pichia pastoris appears to be the microbial host with the greatest potential for the production of trypsin, it has shown problems when expressing cold-adapted fish trypsins (CAFTs). CAFTs are considered of immense value for their comparative advantage over other trypsins in a number of food-processing and biotechnological applications. Thus, to investigate potential obstacles related to the production of CAFTs in P. pastoris, the cunner fish trypsin (CFT) was cloned in different Pichia expression vectors. The vectors were constructed targeting both internal and secreted expression and keeping the CFT native signal peptide. Western-blotting analysis confirmed the expression with evident differences for each construct, observing a major effect of the leader peptide sequence on the expression patterns. Immobilized nickel affinity chromatography yielded a partially purified recombinant CFT, which exhibited trypsin-specific activity after activation with bovine enterokinase.

摘要

胰蛋白酶是一种极具价值的蛋白酶,具有许多工业和生物医学应用。对该酶非动物来源以及具有特殊性质的胰蛋白酶的需求不断增长,激发了在微生物中克隆和表达这种蛋白酶的兴趣。关于重组胰蛋白酶表达的报道在成功程度上存在很大差异,且主要包含在专利申请中,这些申请忽略了与开发相关的困难。尽管巴斯德毕赤酵母似乎是生产胰蛋白酶潜力最大的微生物宿主,但在表达冷适应鱼类胰蛋白酶(CAFTs)时却出现了问题。CAFTs因其在许多食品加工和生物技术应用中相对于其他胰蛋白酶的比较优势而被认为具有巨大价值。因此,为了研究与在巴斯德毕赤酵母中生产CAFTs相关的潜在障碍,将康氏躄鱼胰蛋白酶(CFT)克隆到不同的毕赤酵母表达载体中。构建这些载体旨在实现胞内和分泌表达,并保留CFT的天然信号肽。蛋白质免疫印迹分析证实了每种构建体的表达存在明显差异,观察到前导肽序列对表达模式有主要影响。固定化镍亲和层析得到了部分纯化的重组CFT,在用牛肠激酶激活后表现出胰蛋白酶特异性活性。

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