Purification of microbial b-galactosidase from Kluyveromyces fragilis by bioaffinity partitioning

M. E. D. Silva, T. Franco
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引用次数: 8

Abstract

This work investigated the partitioning of b-galactosidase from Kluyveromyces fragilis in aqueous two-phase systems (ATPS) by bioaffinity. PEG 4000 was chemically activated with thresyl chloride, and the biospecific ligand p-aminophenyl 1-thio-b-D-galactopyranoside (APGP) was attached to the activated PEG 4000. A new two-step method for extraction and purification of the enzyme b-galactosidase from Kluyveromyces fragilis was developed. In the first step, a system composed of 6% PEG 4000-APGP and 8% dextran 505 was used, where b-galactosidase was strongly partitioned to the top phase (K = 2,330). In the second step, a system formed of 13% PEG-APGP and 9% phosphate salt was used to revert the value of the partition coefficient of b-galactosidase (K = 2 x 10-5) in order to provide the purification and recovery of 39% of the enzyme in the bottom salt-rich phase.
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生物亲和分配法纯化脆弱克鲁维菌微生物b-半乳糖苷酶
本文研究了脆弱克卢维菌b-半乳糖苷酶在水两相体系(ATPS)中的生物亲和性分配。用三氯氯对PEG 4000进行化学活化,将生物特异性配体对氨基苯基1-硫代b- d -半乳糖苷(APGP)附着在活化的PEG 4000上。建立了一种新的两步法提取和纯化脆弱克鲁维菌b-半乳糖苷酶。在第一步中,使用6% PEG 4000-APGP和8%葡聚糖505组成的体系,其中b-半乳糖苷酶被强烈划分到顶部相(K = 2,330)。第二步,使用13% PEG-APGP和9%磷酸盐组成的体系还原b-半乳糖苷酶的分配系数值(K = 2 × 10-5),以便在富盐底相中纯化和回收39%的酶。
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