原生质体融合和酶固定化对阴道放线菌维生素D3转化为骨化三醇的影响

A. Abbas, K. Aboshanab, W. Elkhatib, M. Aboulwafa, N. Hassouna
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摘要

采用原生质体融合和酶固定化技术,利用从埃及土壤中分离得到的具有将维生素d3转化为骨化三醇的潜在生物活性的放线菌hyovaginalis,提高了维生素d3转化为骨化三醇的产量。利用16个原生质体杂交种对小阴道放线菌(Actinomyces hyovaginalis)与苏云金芽孢杆菌(B. thuringiensis)和魏氏芽孢杆菌(B. weihenstephanensis)的维生素d3生物转化活性进行了筛选。与野生型分离物相比,发现4个杂种(由小阴道放线菌分离物与苏云金芽孢杆菌形成)保持了生物转化活性;其中,编码为V2B、V3B和V8A的3个杂种表现出较高的骨化三醇产量。编码为V2B和V8A的杂种在每1 L培养基中产生约0.5和0.4 mg骨化三醇,分别比野生型分离物增加350%和280%。在不同浓度的海藻酸盐中,使用2%海藻酸盐固定小阴道放线菌分离物的细胞裂解液,与游离细胞裂解液相比,维生素d3的骨化三醇产量增加了140%。固定形式的活性在15天内重复使用了五次,但在第五次使用时产量下降了50%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement of Bioconversion of Vitamin D3 into Calcitriol by Actinomyces hyovaginalis through Protoplast Fusion and Enzyme Immobilization
Protoplast fusion and enzyme immobilization techniques were applied to increase calcitriol production from vitamin D 3 using Actinomyces hyovaginalis , a local isolate recovered from Egyptian soil, that has a potential bioconversion activity of vitamin D 3 into calcitriol. A total of sixteen protoplast hybrids, formed between Actinomyces hyovaginalis isolate and two Bacillus species ( B. thuringiensis and B. weihenstephanensis ) were screened for vitamin D 3 bioconversion activity. Compared to wild type isolate, four hybrids (formed between Actinomyces hyovaginalis isolate and B. thuringiensis ) were found to preserve the bioconversion activity; out of which, three hybrids coded V2B, V3B and V8A exhibited higher calcitriol production. The hybrids coded V2B and V8A produced, per 1 L culture medium, about 0.5 and 0.4 mg calcitriol corresponding to 350% and 280%, respectively, increase compared to the wild type isolate. Among different alginate concentrations applied, immobilization of cell lysate of Actinomyces hyovaginalis isolate using 2% alginate showed 140% increase in calcitriol production from vitamin D 3 compared to the free cell lysate. Activity of the immobilized form was preserved for five repetitive uses over a period of 15 days but with a 50% decline in production occurring at the fifth use.
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