A Study of Monoclonal Antibody-Producing CHO Cell Lines: What Makes a Stable High Producer?

A Study of Monoclonal Antibody-Producing CHO Cell Lines: What Makes a Stable High Producer?
复制标题

DOI:
10.1002/bit.22158
复制
发表时间:
2009-03-01
影响因子:
3.8
通讯作者:
Yap, Miranda G. S.
Yap, Miranda G. S.
中科院分区:
工程技术2区
文献类型:
--
作者:
Chusainow, Janet;Yang, Yuan Sheng;Yap, Miranda G. S.

文献摘要

被引文献

相似文献

为了生产重组蛋白而构建稳定、高产的细胞系,需要了解细胞内蛋白质表达机制的潜在局限性。为了更好地理解造就稳定高产细胞系的因素,我们利用二氢叶酸还原酶(dhfr)表达系统构建了17个表达重组单克隆抗体的中国仓鼠卵巢亚克隆(CHO - mAb),其比生产速率在3 - 75 pg/(细胞·天)之间,并比较了这些高产和低产克隆的分子特征。采用实时定量聚合酶链反应(RT - qPCR)测定了重链(HC)和轻链(LC)转基因拷贝数以及信使核糖核酸(mRNA)水平。我们发现,与低产克隆相比,高产克隆不仅具有更高的HC和LC转基因拷贝数以及mRNA水平,而且HC与LC转基因拷贝数的比例也更有利。通过研究在无甲氨蝶呤(MTX)选择压力下经过36代培养的CHO - mAb亚克隆的长期稳定性,我们发现体积生产率下降了35 - 92%,这主要是由于HC和LC的mRNA水平显著下降,而转基因拷贝数变化不大。利用Southern杂交技术,我们分析了宿主染色体中HC和LC转基因的整合模式以及在基因扩增和长期培养过程中的变化。我们发现MTX诱导的基因扩增导致染色体重排,从而在生长、生产率和稳定性方面产生克隆变异性。在无MTX的长期培养过程中未发生进一步明显的DNA重排,这表明其他机制导致了转录效率的下降。我们的研究结果表明,扩增的转基因序列呈串联重复排列,可能引发重复序列诱导的基因沉默。我们推测,在无MTX的长期培养过程中转基因mRNA水平的下降主要是由转基因沉默引起的,从而导致单克隆抗体生产率的下降。导致生产不稳定的具体分子机制尚未完全清楚。本文所描述的广泛的特性研究有助于理解高水平、稳定的重组蛋白生产的局限性,并找到改进和加速高产细胞系构建和筛选过程的方法。
Generating stable, high-producing cell lines for recombinant protein production requires an understanding of the potential limitations in the cellular machinery for protein expression. In order to increase our understanding of what makes a stable high producer, we have generated a panel of 17 recombinant monoclonal antibody expressing, Chinese hamster ovary subclones (CHO-mAb) with specific productivities ranging between 3 and 75 pg cell(-1) day(-1) using the dihydrofolate reductase (dhfr) expression system and compare the molecular features of these high- and low-producer clones. The relative heavy chain (HC) and light chain (LC) transgene copy numbers and mRNA levels were determined using real-time quantitative PCR (RT qPCR). We observed that not only higher transgene copy numbers and mRNA levels of both HC and LC were characteristic for the high-producer clones as compared to the low-producer clones but also a more favorable HC to LC transgene copy numbers ratio. By studying the long-term stability of the CHO-mAb subclones in the absence of methotrexate (MTX) selective pressure over 36 passages we observed a 35-92% decrease in volumetric productivity, primarily caused by a significant decrease in HC and LC mRNA levels with little change in the transgene copy numbers. Using Southern blot hybridization we analyzed the HC and LC transgene integration patterns in the host chromosome and their changes in course of gene amplification and long-term culturing. We observed that MTX-induced gene amplification caused chromosomal rearrangements resulting in clonal variability in regards to growth, productivity, and stability. No further obvious DNA rearrangements occurred curing long-term culturing in the absence of MTX, indicating that other mechanisms were responsible for the decreased transcription efficiency. Our results implicate that the amplified transgene sequences were arranged in tandem repeats potentially triggering repeat-induced gene silencing. We hypothesize that the decline in transgene mRNA levels upon long-term culturing without MTX was mainly caused by transgene silencing consequently leading to a loss in mAb productivity. The exact molecular mechanisms causing production instability are not yet fully understood. The herein described extensive characterization studies could help understand the limitations to high-level, stable recombinant protein production and find ways to improving and accelerating the process for high-producer cell line generation and selection.