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青霉素产生菌的青霉素生产规模缩小。

Scale-down of penicillin production in Penicillium chrysogenum.

机构信息

Bioprocess Technology, Department of Biotechnology, Delft University of Technology, Delft, The Netherlands.

出版信息

Biotechnol J. 2011 Aug;6(8):944-58. doi: 10.1002/biot.201000409.

Abstract

In large-scale production reactors the combination of high broth viscosity and large broth volume leads to insufficient liquid-phase mixing, resulting in gradients in, for example, the concentrations of substrate and oxygen. This often leads to differences in productivity of the full-scale process compared with laboratory scale. In this scale-down study of penicillin production, the influence of substrate gradients on process performance and cell physiology was investigated by imposing an intermittent feeding regime on a laboratory-scale culture of a high yielding strain of Penicillium chrysogenum. It was found that penicillin production was reduced by a factor of two in the intermittently fed cultures relative to constant feed cultivations fed with the same amount of glucose per hour, while the biomass yield was the same. Measurement of the levels of the intermediates of the penicillin biosynthesis pathway, along with the enzyme levels, suggested that the reduction of the flux through the penicillin pathway is mainly the result of a lower influx into the pathway, possibly due to inhibitory levels of adenosine monophosphate and pyrophosphate and lower activating levels of adenosine triphosphate during the zero-substrate phase of each cycle of intermittent feeding.

摘要

在大规模生产反应器中,高培养基粘度和大培养基体积的组合导致液相混合不足,导致例如底物和氧气浓度的梯度。这通常会导致全规模过程的生产力与实验室规模相比有所不同。在青霉素生产的这种缩小规模研究中,通过在高产量青霉素曲霉菌株的实验室培养物上施加间歇进料方案,研究了底物梯度对工艺性能和细胞生理学的影响。结果发现,与以相同的葡萄糖量每小时进料的恒速进料培养物相比,间歇进料培养物中的青霉素产量降低了两倍,而生物量产率相同。对青霉素生物合成途径的中间产物水平以及酶水平的测量表明,通过青霉素途径的通量降低主要是由于进入途径的通量降低,可能是由于在每个间歇进料周期的零底物阶段,腺苷一磷酸和焦磷酸的抑制水平以及三磷酸腺苷的激活水平较低。

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