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利用 PiggyBac 转座子在单倍体细胞中的遗传筛选鉴定出 Parp1 是奥拉帕利毒性的介体。

A genetic screen using the PiggyBac transposon in haploid cells identifies Parp1 as a mediator of olaparib toxicity.

机构信息

The Breakthrough Breast Cancer Research Centre, The Institute of Cancer Research, London, United Kingdom.

出版信息

PLoS One. 2013 Apr 25;8(4):e61520. doi: 10.1371/journal.pone.0061520. Print 2013.

Abstract

Genetic perturbation screens have the potential to dissect a wide range of cellular phenotypes. Such screens have historically been difficult in diploid mammalian cells. The recent derivation of haploid embryonic stem cells provides an opportunity to cause loss of function mutants with a random mutagen in a mammalian cell with a normal genetic background. We describe an approach to genetic screens that exploits the highly active piggyBac transposon in haploid mammalian cells. As an example of haploid transposon (HTP) screening, we apply this approach to identifying determinants of cancer drug toxicity and resistance. In a screen for 6-thioguanine resistance we recovered components of the DNA mismatch repair pathway, a known requirement for toxicity. In a further screen for resistance to the clinical poly(ADP-ribose) polymerase (PARP) inhibitor olaparib we recovered multiple Parp1 mutants. Our results show that olaparib toxicity to normal cells is mediated predominantly via Parp1, and suggest that the clinical side effects of olaparib may be on target. The transposon mutant libraries are stable and can be readily reused to screen other drugs. The screening protocol described has several advantages over other methods such as RNA interference: it is rapid and low cost, and mutations can be easily reverted to establish causality.

摘要

遗传扰动筛选有可能剖析广泛的细胞表型。在二倍体哺乳动物细胞中,此类筛选在历史上一直很困难。最近衍生的单倍体胚胎干细胞为在具有正常遗传背景的哺乳动物细胞中用随机诱变剂引起功能丧失突变体提供了机会。我们描述了一种利用单倍体哺乳动物细胞中高度活跃的 piggyBac 转座子进行遗传筛选的方法。作为单倍体转座子 (HTP) 筛选的一个例子,我们将这种方法应用于鉴定癌症药物毒性和耐药性的决定因素。在针对 6-硫鸟嘌呤耐药性的筛选中,我们回收了 DNA 错配修复途径的成分,这是毒性的已知要求。在进一步针对临床多聚 (ADP-核糖) 聚合酶 (PARP) 抑制剂奥拉帕利耐药性的筛选中,我们回收了多个 Parp1 突变体。我们的结果表明,奥拉帕利对正常细胞的毒性主要通过 Parp1 介导,并表明奥拉帕利的临床副作用可能是针对目标的。转座子突变体文库稳定,可重复用于筛选其他药物。与 RNA 干扰等其他方法相比,该筛选方案具有几个优点:它快速且成本低,并且突变很容易恢复以建立因果关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7a8/3636235/97d7acfc8df9/pone.0061520.g001.jpg

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