毕赤酵母
甲酸脱氢酶
发酵
生物化学
工业发酵
NAD+激酶
生物
异源表达
异源的
毛壳
毕赤酵母
生物反应器
化学
酶
食品科学
重组DNA
植物
辅因子
青霉属
基因
作者
Zeynep Efsun Duman,Bedri Burak Duraksoy,Fatih Aktaş,John M. Woodley,Barış Bi̇nay
标识
DOI:10.1016/j.enzmictec.2020.109552
摘要
Nowadays, the use of formate dehydrogenase (FDH, EC 1.17.1.9) is well established as a means of NADH regeneration from NAD+ via the coupled conversion of formate into carbon dioxide. Recent studies have been reported that specifically Chaetomium thermophilum FDH (CtFDH) is the most efficient FDH catalyzing this reaction in reverse (i.e. using CO2 as a substrate to produce formate, and thereby regenerating NAD+). However, to date the production of active CtFDH at high protein expression levels has received relatively little attention. In this study, we have tested the effect of batch and high cell density fermentation (HCDF) strategies in a small stirred fermenter, as well as the effect of supplementing the medium with casamino acids, on the expressed level of secreted CtFDH using P. pastoris. We have established that the amount of expressed CtFDH was indeed enhanced via a HCDF strategy and that extracellular protease activity was eliminated via the addition of casamino acids into the fermentation medium. On this basis, secreted CtFDH in an active form can be easily separated from the fermentation and can be used for subsequent biotechnological applications.
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