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通过实时定量PCR对逆转录病毒生产克隆进行一步筛选。

One step screening of retroviral producer clones by real time quantitative PCR.

作者信息

Towers G J, Stockholm D, Labrousse-Najburg V, Carlier F, Danos O, Pagès J C

机构信息

Genethon III, CNRS URA 1923, Evry, France.

出版信息

J Gene Med. 1999 Sep-Oct;1(5):352-9. doi: 10.1002/(SICI)1521-2254(199909/10)1:5<352::AID-JGM57>3.0.CO;2-I.

Abstract

BACKGROUND

Recombinant retroviruses are obtained from either stably or transiently transfected retrovirus producer cells. In the case of stably producing lines, a large number of clones must be screened in order to select the one with the highest titre. The multi-step selection of high titre producing clones is time consuming and expensive.

METHODS

We have taken advantage of retroviral endogenous reverse transcription to develop a quantitative PCR assay on crude supernatant from producing clones. We used Taqman PCR technology, which, by using fluorescence measurement at each cycle of amplification, allows PCR product quantification. Fluorescence results from specific degradation of a probe oligonucleotide by the Taq polymerase 3'-5' exonuclease activity. Primers and probe sequences were chosen to anneal to the viral strong stop species, which is the first DNA molecule synthesised during reverse transcription. The protocol consists of a single real time PCR, using as template filtered viral supernatant without any other pre-treatment.

RESULTS

We show that the primers and probe described allow quantitation of serially diluted plasmid to as few as 15 plasmid molecules. We then test 200 GFP-expressing retroviral-producing clones either by FACS analysis of infected cells or by using the quantitative PCR. We confirm that the Taqman protocol allows the detection of virus in supernatant and selection of high titre clones. Furthermore, we can determine infectious titre by quantitative PCR on genomic DNA from infected cells, using an additional set of primers and probe to albumin to normalise for the genomic copy number.

CONCLUSION

We demonstrate that real time quantitative PCR can be used as a powerful and reliable single step, high throughput screen for high titre retroviral producer clones.

摘要

背景

重组逆转录病毒可从稳定或瞬时转染的逆转录病毒生产细胞中获得。对于稳定生产细胞系,必须筛选大量克隆以选择滴度最高的克隆。多步骤筛选高滴度生产克隆既耗时又昂贵。

方法

我们利用逆转录病毒内源性逆转录,开发了一种针对生产克隆粗提上清液的定量PCR检测方法。我们使用了Taqman PCR技术,该技术通过在每个扩增循环中进行荧光测量来实现PCR产物定量。荧光是由Taq聚合酶3'-5'核酸外切酶活性对探针寡核苷酸的特异性降解产生的。引物和探针序列被选择与病毒强终止产物退火,该产物是逆转录过程中合成的第一个DNA分子。该方案包括一次实时PCR,使用过滤后的病毒上清液作为模板,无需任何其他预处理。

结果

我们表明,所描述的引物和探针能够对低至15个质粒分子的系列稀释质粒进行定量。然后,我们通过对感染细胞进行FACS分析或使用定量PCR,对200个表达GFP的逆转录病毒生产克隆进行了测试。我们证实,Taqman方案能够检测上清液中的病毒并筛选高滴度克隆。此外,我们可以使用另一组针对白蛋白的引物和探针,通过对感染细胞基因组DNA进行定量PCR来确定感染滴度,以标准化基因组拷贝数。

结论

我们证明,实时定量PCR可作为一种强大且可靠的单步高通量筛选方法,用于筛选高滴度逆转录病毒生产克隆。

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