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使用突变细胞作为提高抗乙型肝炎重组抗体生产水平的一种手段。

Use of mutator cells as a means for increasing production levels of a recombinant antibody directed against Hepatitis B.

作者信息

Coia G, Ayres A, Lilley G G, Hudson P J, Irving R A

机构信息

CSIRO Division of Biomolecular Engineering, CRC for Diagnostic Technologies, Parkville, Victoria, Australia.

出版信息

Gene. 1997 Nov 12;201(1-2):203-9. doi: 10.1016/s0378-1119(97)00452-6.

DOI:10.1016/s0378-1119(97)00452-6
PMID:9409788
Abstract

A mutation strategy which utilises phage display technology and the Escherichia coli mutator strains, mutD5-FIT and XL1-RED, was applied to a Hepatitis B (HepB) specific single-chain Fv (scFv) to incorporate random mutations throughout the gene. Messenger RNA from a hybridoma producing antibodies against HepB was isolated, reverse transcribed and used as template for the production of scFv. Following production of the scFv protein using an E. coli expression vector (pGC), the scFv gene was recloned into a phage display vector (pHFA). This gene construct was introduced into E. coli mutator cells and the transformed cells were used as an inoculum for liquid cultures. After five cycles of growth at 37 degrees C, each followed by dilution and re-inoculation of fresh media, recombinant phage were recovered. Nucleotide sequence analysis of the scFv gene in phage selected on HBsAg-coated magnetic beads identified amino acid substitutions which produced an increase of greater than 10-fold in apparent production levels. Competitive ELISA studies showed that the selected scFv mutants appeared to have similar affinity to HBsAg as the parent scFv. The apparent increase in production was not the result of improved surface characteristics of regions uniquely exposed in scFvs, as the sites did not correlate with the variable/constant interface of the scFv variable region normally masked in Fabs or IgGs.

摘要

一种利用噬菌体展示技术和大肠杆菌突变菌株mutD5-FIT及XL1-RED的突变策略,被应用于乙肝(HepB)特异性单链Fv(scFv),以使整个基因掺入随机突变。从产生抗HepB抗体的杂交瘤中分离信使RNA,反转录并用作生产scFv的模板。使用大肠杆菌表达载体(pGC)生产scFv蛋白后,将scFv基因重新克隆到噬菌体展示载体(pHFA)中。将该基因构建体导入大肠杆菌突变细胞,转化后的细胞用作液体培养物的接种物。在37℃下进行五个生长周期,每个周期后进行稀释并重新接种新鲜培养基,回收重组噬菌体。对在包被有HBsAg的磁珠上选择的噬菌体中的scFv基因进行核苷酸序列分析,确定了氨基酸取代,这些取代使表观产量水平提高了10倍以上。竞争性ELISA研究表明,所选的scFv突变体与亲本scFv对HBsAg的亲和力似乎相似。产量的明显增加并非scFv中独特暴露区域的表面特性改善所致,因为这些位点与通常在Fabs或IgGs中被掩盖的scFv可变区的可变/恒定界面无关。

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