首页> 美国卫生研究院文献>Microorganisms >Glucose-Limited Fed-Batch Cultivation Strategy to Mimic Large-Scale Effects in Escherichia coli Linked to Accumulation of Non-Canonical Branched-Chain Amino Acids by Combination of Pyruvate Pulses and Dissolved Oxygen Limitation
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Glucose-Limited Fed-Batch Cultivation Strategy to Mimic Large-Scale Effects in Escherichia coli Linked to Accumulation of Non-Canonical Branched-Chain Amino Acids by Combination of Pyruvate Pulses and Dissolved Oxygen Limitation

机译:葡萄糖有限的美联储培养策略以通过组合丙酮酸脉冲和溶解氧限制与非规范支链氨基酸积累的大肠杆菌中的大规模效应模仿大规模效应

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摘要

Insufficient mixing in large-scale bioreactors provokes gradient zones of substrate, dissolved oxygen (DO), pH, and other parameters. E. coli responds to a high glucose, low oxygen feeding zone with the accumulation of mixed acid fermentation products, especially formate, but also with the synthesis of non-canonical amino acids, such as norvaline, norleucine and β-methylnorleucine. These amino acids can be mis-incorporated into recombinant products, which causes a problem for pharmaceutical production whose solution is not trivial. While these effects can also be observed in scale down bioreactor systems, these are challenging to operate. Especially the high-throughput screening of clone libraries is not easy, as fed-batch cultivations would need to be controlled via repeated glucose pulses with simultaneous oxygen limitation, as has been demonstrated in well controlled robotic systems. Here we show that not only glucose pulses in combination with oxygen limitation can provoke the synthesis of these non-canonical branched-chain amino acids (ncBCAA), but also that pyruvate pulses produce the same effect. Therefore, we combined the enzyme-based glucose delivery method Enbase® in a PALL24 mini-bioreactor system and combined repeated pyruvate pulses with simultaneous reduction of the aeration rate. These cultivation conditions produced an increase in the non-canonical branched chain amino acids norvaline and norleucine in both the intracellular soluble protein and inclusion body fractions with mini-proinsulin as an example product, and this effect was verified in a 15 L stirred tank bioreactor (STR). To our opinion this cultivation strategy is easy to apply for the screening of strain libraries under standard laboratory conditions if no complex robotic and well controlled parallel cultivation devices are available.
机译:大规模生物反应器中的混合不充分地引起底物的梯度区域,溶解氧(DO),pH和其他参数。大肠杆菌对高葡萄糖,低氧气进料区的积累,特别是甲酸,尤其是甲酸,还具有非规范氨基酸的合成,例如NORVALINE,NORLEUNINE和β-甲基喹啉。这些氨基酸可以被拆卸到重组产物中,这导致药物生产的问题,其溶液不差异。虽然也可以在缩小的生物反应器系统中观察这些效果,但这些效果是挑战操作。特别是克隆文库的高通量筛选并不容易,因为需要通过具有同时氧气限制的反复葡萄糖脉冲来控制喂养批量培养,如在良好控制的机器人系统中证明的那样。在这里,我们认为,不仅可以与氧气限制结合的葡萄糖脉冲可以引发这些非典型支链氨基酸(NCBCAA)的合成,而且还可以产生丙酮酸脉冲产生相同的效果。因此,我们将基于酶的葡萄糖递送方法Enbase®与Pall24迷你生物反应器系统组合并组合重复的丙酮酸脉冲,同时降低曝气速率。这些培养条件在细胞内可溶性蛋白质和包含迷你胰岛素中的含有迷你胰岛素的非规范分支链氨基酸NORVALINE和NOLLEURININ的增加,作为实施例产物,在15L搅拌釜生物反应器中验证了这种效果( str)。我们认为,如果没有可用的复杂机器人和良好控制的平行培养装置,这种培养策略易于在标准实验室条件下筛选菌株文库。

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