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首页> 外文期刊>AMB Express >Enhancing the production of S -adenosyl-L-methionine in Pichia pastoris GS115 by metabolic engineering
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Enhancing the production of S -adenosyl-L-methionine in Pichia pastoris GS115 by metabolic engineering

机译:通过代谢工程提高巴斯德毕赤酵母GS115中S-腺苷-L-蛋氨酸的生产

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S-adenosyl-L-methionine is an important bioactive molecule participating in a number of biochemical reactions including the transmethylation and transsulphuration reactions of proteins and the biosynthesis of aliphatic polyamines. Strategies of metabolic engineering were used to alter the metabolic flux for enhancing the production of S-adenosyl-L-methionine (SAM) in Pichia pastoris GS115. These strategies include the over-expression of Sam 2 by knock-in technique and the disruption of Cbs by knock-out technique. Three strains, ZJGSU1 with knock- in of Sam 2, ZJGSU2 with knock-out of Cbs and ZJGSU3 with both knock-in of Sam 2 and knock -out of Cbs, were constructed for the effective production of SAM. Yields of SAM in strains ZJGSU1 and ZJGSU2 were 32- and 5-fold higher than in the original strain P. pastoris GS115, respectively. The strain ZJGSU3 had a dramatic increase in the SAM yield, and it was 46-fold higher compared to the original strain. These results indicate that there is a strong synergistic effect on the production of SAM by combining knock-in with knock-out techniques. The yield of SAM in ZJGSU3 strain was 4.37 g/L in a 3 L fermentor. This study provides deep insight into the effective industrial production of SAM in future.
机译:S-腺苷-L-蛋氨酸是一种重要的生物活性分子,参与许多生化反应,包括蛋白质的甲基化和反硫化反应以及脂肪族多胺的生物合成。代谢工程学的策略被用于改变代谢通量,以增强巴斯德毕赤酵母GS115中S-腺苷-L-甲硫氨酸(SAM)的产生。这些策略包括通过敲除技术过度表达Sam 2和通过敲除技术破坏Cbs。为了有效地生产SAM,构建了三个菌株,即敲入Sam 2的ZJGSU1,敲除Cbs的ZJGSU2和敲除Sam 2和Cbs的ZJGSU3。 ZJGSU1和ZJGSU2菌株的SAM产量分别比原始菌株巴斯德毕赤酵母GS115高32倍和5倍。 ZJGSU3菌株的SAM产量有了显着提高,比原始菌株高46倍。这些结果表明,通过结合敲入和敲除技术,对SAM的生产具有很强的协同作用。在3 L发酵罐中,ZJGSU3菌株中SAM的产量为4.37 g / L。这项研究为将来SAM的有效工业生产提供了深刻的见识。

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