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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Development of Metabolically Engineered Corynebacterium glutamicum for Enhanced Production of Cadaverine and Its Use for the Synthesis of Bio-Polyamide 510
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Development of Metabolically Engineered Corynebacterium glutamicum for Enhanced Production of Cadaverine and Its Use for the Synthesis of Bio-Polyamide 510

机译:代谢工程化棒状杆菌的发展,用于增强野兔生产及其用于合成生物聚酰胺510的用途

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Lysine decarboxylases (LDCs) from Escherichia coli, Lactobacillus saerimneri, Streptomyces coelicolor, Selemonas ruminantium, Hafnia alvei, and Vibrio vulnificus were examined for their ability to enhance the fermentative production of cadaverine in Corynebacterium glutamcium. Among these LDCs, the plasmid-based expression of the H. alvei LDC gene (ldcC(Ha)) under strong promoters (P-H30, P-H36) produced high concentrations of cadaverine (11.411.5 g/L), which is similar to 12.5 g/L of cadaverine produced by the plasmid-based expression of the E. coli LDC gene (ldcC(Ec)) by the PH30 promoter in our previous report. The production of cadaverine in batch (30.8 g/L) and fed-batch (93.7 g/L) fermentation cultures using recombinant strain Corynebacterium glutamicum H30HaLDC expressing plasmid-borne ldcC(Ha) under control of the PH30 promoter was 18 and 14% higher than that obtained using C. glutamicum P-H30 expressing plasmid-borne ldcC(Ec) under control of the PH30 promoter, in which production was only 26 and 82.2 g/L in batch and fed-batch cultures, respectively. Finally, C. glutamicum GH30HaLDC was constructed by integration of ldcC(Ha) into C. glutamicum PKC at the lysE site. C. glutamicum GH30HaLDC produced 125 g/L of cadaverine in fed-batch culture, which was 20% higher than the cadaverine production of 104 g/L by C. glutamicum G-H30 in our previous report. Cadaverine produced by fed-batch culture of C. glutamicum GH30HaLDC was purified and used for the synthesis of bio-based polyamide PA510 by copolymerization with sebacic acid. Synthesized PA510 showed thermal and material properties comparable to those of chemical-based PA510.
机译:研究了来自大肠杆菌的赖氨酸脱羧酶(LDCS),Lactobacillus Saerimneri,Strepomyces共粒子,Selemonas强者,Hafnia Alvei和vibria Wulnificus的能力,以增强谷氨酸棒状杆菌的发酵生产尸毒胺。在这些LDC中,在强启动子(P-H30,P-H36)下的H.Alvei LDC基因(LDCC(HA))的基于质粒的表达产生了高浓度的野牛(11.411.5g / L),即类似于我们之前的报告中PH30启动子的基于质粒基于大肠杆菌LDC基因的基于质粒的基于质粒的表达产生的12.5g / l的尸胺。使用重组菌株棒状杆菌H30HALDC在PH30启动子的控制下,使用重组菌株棒状杆菌(HA)的重组菌株棒状杆菌(HA)的重组菌株棒状杆菌H30HALDC的发酵培养物的产生为18至14%比在PH30启动子的控制下使用表达质粒的LDCC(EC)的C.谷氨酰胺P-H30获得的,其中产量分批和补料分批培养物仅产生26和82.2g / L.最后,通过将LDCC(HA)与Lyse位点的C.谷氨酰胺PKC集成来构建C.GlutamicumGH30HALDC。 C.GlutamicumGH30HALDC在我们之前的报告中产生了比喂养分批培养的125克/升尸培养物,比C.Glutamicum G-H30的104g / L的尸体产量高20%。纯化由C.Glutamicum GH30HALDC的FED分批培养生产的野兔并用与SKBACICAN共聚合合成生物基聚酰胺PA510。合成的PA510显示出与基于化学的PA510的热和材料性质相当。

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