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Enhancement of thermoalkaliphilic xylanase production by Pichia pastoris through novel fed-batch strategy in high cell-density fermentation

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논문

Enhancement of thermoalkaliphilic xylanase production by Pichia pastoris through novel fed-batch strategy in high cell-density fermentation

학술지

BMC biotechnology

저자명

Shang, Tingting; Si, Dayong; Zhang, Dongyan; Liu, Xuhui; Zhao, Longmei; Hu, Cong; Fu, Yu; Zhang, Rijun

초록

<P><B>Background</B></P><P>Xylanase degrades xylan into monomers of various sizes by catalyzing the endohydrolysis of the 1,4-&beta;-D-xylosidic linkage randomly, possessing potential in wide industrial applications. Most of xylanases are susceptible to be inactive when suffering high temperature and high alkaline process. Therefore, it is necessary to develop a high amount of effective thermoalkaliphilic xylanases. This study aims to enhance thermoalkaliphilic xylanase production in <I>Pichia pastoris</I> through fermentation parameters optimization and novel efficient fed-batch strategy in high cell-density fermentation.</P><P><B>Results</B></P><P>Recombinant xylanase activity increased 12.2%, 7.4%, 12.0% and 9.9% by supplementing the <I>Pichia pastoris</I> culture with 20&nbsp;g/L wheat bran, 5&nbsp;mg/L&nbsp;L-histidine, 10&nbsp;mg/L&nbsp;L-tryptophan and 10&nbsp;mg/L&nbsp;L-methionine in shake flasks, respectively. Investigation of nutritional fermentation parameters, non-nutritional fermentation parameters and feeding strategies in 1&nbsp;L bioreactor and 1&nbsp;L shake flask revealed that glycerol and methanol feeding strategies were the critical factors for high cell density and xylanase activity. In 50&nbsp;L bioreactor, a novel glycerol feeding strategy and a four-stage methanol feeding strategy with a stepwise increase in feeding rate were developed to enhance recombinant xylanase production. In the initial 72&nbsp;h of methanol induction, the linear dependence of xylanase activity on methanol intake was observed (R<SUP>2</SUP> = 0.9726). The maximum xylanase activity was predicted to be 591.2 U/mL, while the actual maximum xylanase activity was 560.7 U/mL, which was 7.05 times of that in shake flask. Recombinant xylanase retained 82.5% of its initial activity after pre-incubation at 80&nbsp;°C for 50&nbsp;min (pH&nbsp;8.0), and it exhibited excellent stability in the broad temperature (60&#x2013;80&nbsp;°C) and pH (pH&nbsp;8.0&#x2013;11.0) ranges.</P><P><B>Conclusions</B></P><P>Efficient glycerol and methanol fed-batch strategies resulting in desired cell density and xylanase activity should be applied in other <I>P. pastoris</I> fermentation for other recombinant proteins production. Recombinant xylanases with high pH- and thermal-stability showed potential in various industrial applications.</P>

발행연도

2017

발행기관

BioMed Central

라이선스

cc-by

ISSN

1472-6750

17

페이지

pp.55

주제어

Thermoalkaliphilic xylanase; Pichia pastoris; Fermentation parameter optimization; Bioprocess; Fed-batch strategy; High cell-density fermentation

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1 2023-12-11

논문; 2017-06-21

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