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从缺乏主要内切葡聚糖酶基因的重组里氏木霉菌株中免疫亲和色谱纯化纤维二糖水解酶II突变体

Immunoaffinity Chromatographic Purification of Cellobiohydrolase II Mutants from Recombinant Trichoderma reesei Strains Devoid of Major Endoglucanase Genes.

作者信息

Koivula A, Lappalainen A, Virtanen S, Mäntylä AL, Suominen P, Teeri TT

机构信息

VTT Biotechnology and Food Research, Espoo, FIN-02044 VTT, Finland

出版信息

Protein Expr Purif. 1996 Dec;8(4):391-400.

PMID:8954885
Abstract

Efficient purification of Trichoderma reesei cellobiohydrolase II (CBHII) requires the use of affinity chromatography based on a substrate analogue. Due to altered substrate binding, the purification of many active-site mutants of CBHII from the complex fungal culture media represents a considerable challenge. Here we describe a combination of two approaches to facilitate the purification: the first is based on the construction of novel engineered T. reesei strains devoid of the major contaminating endoglucanases, and the second uses immunoaffinity chromatography as the final purification step. Two different procedures for the preparation of the antibody matrix were tested. Crosslinking of the monoclonal antibody to Protein G matrix instead of the conventional immobilization via cyanogen bromide increased the binding efficiency. Three different active-site mutants of CBHII bound to the immunoaffinity column in neutral pH and were eluted in pH 2.7. The purity of the CBHII mutant preparations was tested using small chromophoric substrates and hydroxyethyl cellulose, which are hydrolyzed by many other cellulases but not by CBHII. The immunoaffinity column purified the CBHII mutants over 800-fold in a single step and resulted in homogeneous protein preparations free of proteolytically cleaved forms of CBHII. The use of the double replacement T. reesei production strains, especially the one lacking the genes coding for both the endogeneous CBHII and the endoglucanase II (EGII), helped to reduce the total endoglucanase activity in the preparations.

摘要

里氏木霉纤维二糖水解酶II(CBHII)的高效纯化需要使用基于底物类似物的亲和色谱法。由于底物结合的改变,从复杂的真菌培养基中纯化许多CBHII活性位点突变体是一项相当大的挑战。在此,我们描述了两种方法的组合以促进纯化:第一种方法基于构建缺乏主要污染性内切葡聚糖酶的新型工程化里氏木霉菌株,第二种方法使用免疫亲和色谱作为最终纯化步骤。测试了两种不同的制备抗体基质的程序。将单克隆抗体与蛋白G基质交联,而不是通过溴化氰进行传统固定,提高了结合效率。三种不同的CBHII活性位点突变体在中性pH下与免疫亲和柱结合,并在pH 2.7下洗脱。使用小的发色底物和羟乙基纤维素测试了CBHII突变体制剂的纯度,许多其他纤维素酶可水解这些底物,但CBHII不会。免疫亲和柱在一步中纯化CBHII突变体超过800倍,并得到不含CBHII蛋白水解裂解形式的均一蛋白质制剂。使用双替换里氏木霉生产菌株,特别是缺乏编码内源性CBHII和内切葡聚糖酶II(EGII)基因的菌株,有助于降低制剂中的总内切葡聚糖酶活性。

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