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Effect of pH on the stability of Pleurotus eryngii versatile peroxidase during heterologous production in Emericella nidulans

机译:pH值对刺槐异产中平菇多功能过氧化物酶稳定性的影响。

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摘要

Complementary DNA (cDNA) encoding the new versatile peroxidase from the ligninolytic basidiomycete Pleurotus eryngii has been expressed in the ascomycete Emericella nidulans. In recombinant E. nidulans cultures, the pH reached values as high as 8.3, correlating with a sharp decrease in peroxidase activity. Peroxidase was rapidly inactivated at alkaline pH, but was comparatively stable at acidic pH. The peroxidase inactivation in alkaline buffer could be reversed by adding Ca2+ and lowering the pH. However, reactivation did not result after incubating the enzyme in non-buffered E. nidulans cultures that reached pH 7.5. To optimize recombinant peroxidase production, the effect of controlling the pH in E. nidulans bioreactor cultures was studied. An extended growth period, and a significant increase in the recombinant peroxidase level (5.3-fold higher activity than in the bioreactor without pH control) was obtained when the pH was maintained at 6.8, showing that culture pH is an important parameter for recombinant peroxidase production.
机译:互补DNA(cDNA)编码来自木质素分解担子菌杏鲍菇的新型多功能过氧化物酶,已在子囊虫Emericella nidulans中表达。在重组构巢大肠杆菌中,pH值高达8.3,与过氧化物酶活性的急剧下降有关。过氧化物酶在碱性pH下迅速失活,但在酸性pH下相对稳定。通过添加Ca2 +并降低pH可以逆转碱性缓冲液中的过氧化物酶失活。但是,将酶在pH 7.5的无缓冲构巢曲霉培养物中孵育后,未获得重新激活。为了优化重组过氧化物酶的生产,研究了控制构巢曲霉生物反应器培养物中pH值的作用。当pH保持在6.8时,获得了延长的生长期和重组过氧化物酶水平的显着提高(比无pH的生物反应器高5.3倍),表明培养pH是重组过氧化物酶生产的重要参数。

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