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重组抗体片段在大肠杆菌周质中的高水平积累需要三重突变(degP、prc、spr)宿主菌株。

High-level accumulation of a recombinant antibody fragment in the periplasm of Escherichia coli requires a triple-mutant (degP prc spr) host strain.

作者信息

Chen Christina, Snedecor Brad, Nishihara Julie C, Joly John C, McFarland Nancy, Andersen Dana C, Battersby John E, Champion Kathleen M

机构信息

Department of Cell Culture and Fermentation Research and Development, Genentech, Inc., South San Francisco, California 94080, USA.

出版信息

Biotechnol Bioeng. 2004 Mar 5;85(5):463-74. doi: 10.1002/bit.20014.

Abstract

During production of a humanized antibody fragment secreted into the periplasm of Escherichia coli, proteolytic degradation of the light chain was observed. In order to determine which protease(s) were responsible for this degradation, we compared expression of the F(ab')(2) antibody fragment in several E. coli strains carrying mutations in genes encoding periplasmic proteases. Analysis of strains cultured in high cell density fermentations showed that the combination of mutations in degP prc spr was necessary for the cells to produce high levels of the desired recombinant antibody fragment. In order to eliminate the possible effects of mutations in other genes, we constructed E. coli strains with protease mutations in isogenic backgrounds and repeated the studies in high cell density fermentations. Extensive light chain proteolysis persisted in degP strains. However, light chain proteolysis was substantially decreased in prc and prc spr strains, and was further decreased with the introduction of a degP mutation in prc and prc spr mutant strains. These results show that the periplasmic protease Prc (Tsp) is primarily responsible for proteolytic degradation of the light chain during expression of a recombinant antibody fragment in E. coli, and that DegP (HtrA) makes a minor contribution to this degradation as well. The results also show that spr, a suppressor of growth defects in prc strains, is required for a prc mutant to survive throughout high cell density fermentations.

摘要

在生产分泌到大肠杆菌周质中的人源化抗体片段时,观察到轻链发生了蛋白水解降解。为了确定是哪种蛋白酶导致了这种降解,我们比较了F(ab')(2)抗体片段在几种编码周质蛋白酶的基因发生突变的大肠杆菌菌株中的表达情况。对在高细胞密度发酵中培养的菌株进行分析表明,degP、prc和spr基因的突变组合对于细胞产生高水平的所需重组抗体片段是必要的。为了消除其他基因突变可能产生的影响,我们构建了等基因背景下带有蛋白酶突变的大肠杆菌菌株,并在高细胞密度发酵中重复了这些研究。在degP突变菌株中,轻链的广泛蛋白水解持续存在。然而,在prc突变菌株和prc spr双突变菌株中,轻链的蛋白水解显著减少,并且在prc和prc spr突变菌株中引入degP突变后,轻链的蛋白水解进一步减少。这些结果表明,周质蛋白酶Prc(Tsp)在大肠杆菌中重组抗体片段表达过程中主要负责轻链的蛋白水解降解,DegP(HtrA)对此降解也有较小贡献。结果还表明,spr作为prc突变菌株生长缺陷的抑制因子,是prc突变体在整个高细胞密度发酵过程中存活所必需的。

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