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首页> 外文期刊>Applied Microbiology and Biotechnology >Effect of substrate feed rate on recombinant protein secretion, degradation and inclusion body formation in Escherichia coli
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Effect of substrate feed rate on recombinant protein secretion, degradation and inclusion body formation in Escherichia coli

机译:底物进料速率对大肠杆菌中重组蛋白分泌,降解和包涵体形成的影响

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The effect of changes in substrate feed rate during fedbatch cultivation was investigated with respect to soluble protein formation and transport of product to the periplasm in Escherichia coli. Production was transcribed from the P-malK promoter; and the cytoplasmic part of the production was compared with production from the P-lacUV5 promoter. The fusion protein product, Zb-MalE, was at all times accumulated in the soluble protein fraction except during high-feed-rate production in the cytoplasm. This was due to a substantial degree of proteolysis in all production systems, as shown by the degradation pattern of the product. The product was also further subjected to inclusion body fori-nation. Production in the periplasm resulted in accumulation of the full-length protein; and this production system led to a cellular physiology where the stringent response could be avoided. Furthermore, the secretion could be used to abort the diauxic growth phase resulting from use of the P-malK promoter. At high feed rate, the accumulation of acetic acid, due to overflow metabolism, could furthermore be completely avoided.
机译:就可溶性蛋白质的形成和产物向大肠杆菌周质的运输方面,研究了补料分批培养过程中底物进料速率变化的影响。从P-malK启动子转录生产;并将产物的细胞质部分与P-lacUV5启动子的产物进行比较。融合蛋白产物Zb-MalE始终积累在可溶性蛋白组分中,除非在细胞质中产生高进料速率。如产品的降解模式所示,这是由于所有生产系统中的蛋白水解程度都很高。该产物还进一步经受包涵体形成。周质中的产生导致全长蛋白质的积累;这种生产系统导致了细胞生理学的发展,可以避免严格的反应。此外,该分泌可用于中止因使用P-malK启动子而导致的双生生长期。在高进料速率下,由于溢流新陈代谢,乙酸的积累可以进一步避免。

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