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威氏血蓝蛋白的单域球蛋白:增强好氧代谢用于生物技术应用。

The single-domain globin of Vitreoscilla: augmentation of aerobic metabolism for biotechnological applications.

机构信息

Institute of Microbiology, ETH Zürich, Zürich, Switzerland.

出版信息

Adv Microb Physiol. 2011;58:81-139. doi: 10.1016/B978-0-12-381043-4.00003-9.

DOI:10.1016/B978-0-12-381043-4.00003-9
PMID:21722792
Abstract

Extensive studies have revealed that large-scale, high-cell density bioreactor cultivations have significant impact on metabolic networks of oxygen-requiring production organisms. Oxygen transfer problems associated with fluid dynamics and inefficient mixing efficiencies result in oxygen gradients, which lead to reduced performance of the bioprocess, decreased product yields, and increased production costs. These problems can be partially alleviated by improving bioreactor configuration and setting, but significant improvements have been achieved by metabolic engineering methods, especially by heterologously expressing Vitreoscilla hemoglobin (VHb). Vast numbers of studies have been accumulating during the past 20 years showing the applicability of VHb to improve growth and product yields in a variety of industrially significant prokaryotic and eukaryotic hosts. The global view on the metabolism of globin-expressing Escherichia coli cells depicts increased energy generation, higher oxygen uptake rates, and a decrease in fermentative by-product excretion. Transcriptome and metabolic flux analysis clearly demonstrate the multidimensional influence of heterologous VHb on the expression of stationary phase-specific genes and on the regulation of cellular metabolic networks. The exact biochemical mechanisms by which VHb is able to improve the oxygen-limited growth remain poorly understood. The suggested mechanisms propose either the delivery of oxygen to the respiratory chain or the detoxification of reactive nitrogen species for the protection of cytochrome activity. The expression of VHb in E. coli bioreactor cultures is likely to assist bacterial growth through providing an increase in available intracellular oxygen, although to fully understand the exact role of VHb in vivo, further analysis will be required.

摘要

大量研究表明,大规模、高细胞密度的生物反应器培养对需氧生产生物的代谢网络有重大影响。与流体动力学相关的氧传递问题和低效的混合效率导致氧梯度,从而降低生物过程的性能、降低产物产量并增加生产成本。通过改进生物反应器的配置和设定可以部分缓解这些问题,但通过代谢工程方法,特别是通过异源表达血影蛋白(VHb),已经取得了显著的改进。在过去的 20 年中,大量研究积累表明,VHb 可用于提高各种工业上重要的原核和真核宿主的生长和产物产量。表达球蛋白的大肠杆菌细胞的代谢的全球观点表明,能量生成增加,氧气摄取率提高,发酵副产物排泄减少。转录组和代谢通量分析清楚地表明,异源 VHb 对特定于静止期的基因表达和细胞代谢网络的调节具有多维影响。VHb 能够改善氧限制生长的具体生化机制仍知之甚少。建议的机制要么提出将氧气输送到呼吸链,要么提出解毒反应性氮物种以保护细胞色素活性。VHb 在大肠杆菌生物反应器培养物中的表达可能通过增加可用的细胞内氧来帮助细菌生长,尽管要完全理解 VHb 在体内的确切作用,还需要进一步分析。

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