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首页> 外文期刊>Applied Microbiology and Biotechnology >Comparison of green fluorescent protein expression in two industrial Escherichia coli strains, BL21 and W3110, under co-expression of bacterial hemoglobin
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Comparison of green fluorescent protein expression in two industrial Escherichia coli strains, BL21 and W3110, under co-expression of bacterial hemoglobin

机译:在细菌血红蛋白共表达下两种工业大肠杆菌BL21和W3110菌株中绿色荧光蛋白表达的比较

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摘要

Vitreoscilla hemoglobin (VHb) has been successfully used to enhance production of foreign proteins in several microorganisms including Escherichia coli. We compared the expression of an oxygen-dependent foreign protein, green fluorescent protein (GFP) under co-expression of VHb in two typical industrial E. coli strains, BL21 (a B derivative) and W3110 (a K12 derivative), which have different metabolic properties. We employed the nar oxygen-dependent promoter for self-tuning regulation of VHb expression due to the natural transition of dissolved oxygen (DO) level during culture. We observed several interesting and differing behaviors in cultures of the two strains. VHb co-expression showed a positive influence on expression, and even on solubility, of GFP in both strains; while strain BL21 had the higher GFP expression level, W3110 showed higher solubility of expressed GFP. GFP expression in strain BL21 was very largely affected by variation of aeration environments, but W3110 was not significantly impacted. We surmised that this arose from different oxygen utilization abilities and indeed the two strains showed different patterns of oxygen uptake rate. Interestingly, the VHb co-expressing W3110 strain exhibited a peculiar increasing pattern of GFP expression during the late culture period even under low aeration conditions and this enhancement was more obvious in large-scale cultures. Therefore, this strain could be successfully employed in practical large-scale production cultures where DO levels tend to be limited.
机译:玻璃藻血红蛋白(VHb)已成功用于增强包括大肠杆菌在内的多种微生物中外源蛋白质的产生。我们比较了VHb在两种典型的工业大肠杆菌菌株BL21(一种B衍生物)和W3110(一种K12衍生物)中共表达时,氧依赖性外源蛋白绿色荧光蛋白(GFP)的表达。代谢特性。由于培养过程中溶解氧(DO)水平的自然转变,我们将nar氧依赖性启动子用于VHb表达的自调节调节。我们在两种菌株的培养物中观察到了几种有趣且不同的行为。 VHb共表达对两种菌株中GFP的表达甚至溶解度都有积极影响。 BL21菌株具有较高的GFP表达水平,而W3110菌株具有较高的GFP溶解度。菌株BL21中的GFP表达在很大程度上受通气环境变化的影响,但W3110并未受到显着影响。我们推测这是由于不同的氧气利用能力引起的,实际上这两个菌株显示出不同的氧气吸收率模式。有趣的是,VHb共表达的W3110菌株即使在低通气条件下,在培养后期仍显示出GFP表达的独特增加模式,这种增强在大规模培养中更为明显。因此,该菌株可以成功地用于溶解氧水平受到限制的实际大规模生产文化中。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2002年第5期|523-528|共6页
  • 作者

    D. Kang; Y. Kim; H. Cha;

  • 作者单位

    Department of Chemical Engineering and Division of Molecular and Life Sciences Pohang University of Science and Technology Pohang 790–784 Korea;

    Department of Chemical Engineering and Division of Molecular and Life Sciences Pohang University of Science and Technology Pohang 790–784 Korea;

    Department of Chemical Engineering and Division of Molecular and Life Sciences Pohang University of Science and Technology Pohang 790–784 Korea;

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