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通过细胞工程实现离心效率的显著提升:共表达葡萄球菌核酸酶以降低生物工艺原料的粘度。

Step change in the efficiency of centrifugation through cell engineering: co-expression of Staphylococcal nuclease to reduce the viscosity of the bioprocess feedstock.

作者信息

Balasundaram B, Nesbeth D, Ward J M, Keshavarz-Moore E, Bracewell D G

机构信息

Department of Biochemical Engineering, The Advanced Centre for Biochemical Engineering, University College London, London, UK.

出版信息

Biotechnol Bioeng. 2009 Sep 1;104(1):134-42. doi: 10.1002/bit.22369.

DOI:10.1002/bit.22369
PMID:19415775
Abstract

Cell engineering to enable step change improvements in bioprocessing can be directed at targets other than increasing product titer. The physical properties of the process suspension such as viscosity, for example, have a major impact on various downstream processing unit operations. The release of chromosomal DNA during homogenization of Escherichia coli and its influence on viscosity is well-recognized. In this current article we demonstrate co-expression of Staphylococcus aureus nuclease in E. coli to reduce viscosity through auto-hydrolysis of nucleic acids. Viscosity reduction of up to 75% was achieved while the particle size distribution of cell debris was maintained approximately constant (d(50) = 0.5-0.6 microm). Critically, resultant step change improvements to the clarification performance under disc-stack centrifugation conditions are shown. The cell-engineered nuclease matched or exceeded the viscosity reduction performance seen with the addition of exogenous nuclease removing the expense and validation issues associated with such additions to a bioprocess. The resultant material dramatically altered performance in scale-down mimics of continuous disc-stack centrifugation. Laboratory scale data indicated that a fourfold reduction in the settling area of a disc-stack centrifuge can be expected due to a less viscous process stream achieved through nuclease co-expression with a recombinant protein.

摘要

实现生物加工过程中重大改进的细胞工程可以针对除提高产品滴度以外的目标。例如,工艺悬浮液的物理性质(如粘度)对各种下游加工单元操作有重大影响。大肠杆菌匀浆过程中染色体DNA的释放及其对粘度的影响已得到充分认识。在本文中,我们展示了金黄色葡萄球菌核酸酶在大肠杆菌中的共表达,以通过核酸的自水解降低粘度。在保持细胞碎片粒度分布大致恒定(d(50)=0.5-0.6微米)的情况下,粘度降低了75%。至关重要的是,展示了在碟片式离心机条件下澄清性能由此得到的重大改进。细胞工程核酸酶达到或超过了添加外源核酸酶时的粘度降低性能,消除了向生物加工过程中添加此类物质所带来的成本和验证问题。所得材料在连续碟片式离心机的缩小模拟装置中显著改变了性能。实验室规模数据表明,由于通过核酸酶与重组蛋白共表达实现了较低粘度的工艺流,预计碟片式离心机的沉降面积可减少四倍。

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