Di Primio Cristina, Galli Alvaro, Cervelli Tiziana, Zoppè Monica, Rainaldi Giuseppe
Laboratorio di Terapia Genica e Molecolare, Istituto di Fisiologia Clinica Area della Ricerca del CNR, via Moruzzi 1, 56124 Pisa, Italy.
Nucleic Acids Res. 2005 Aug 16;33(14):4639-48. doi: 10.1093/nar/gki778. Print 2005.
When exogenous DNA is stably introduced in mammalian cells, it is typically integrated in random positions, and only a minor fraction enters a pathway of homologous recombination (HR). The complex Rad51/Rad52 is a major player in the management of exogenous DNA in eukaryotic organisms and plays a critical role in the choice of repair system. In Saccharomyces cerevisiae, the pathway of choice is HR, mediated by Rad52 (ScRad52), which differs slightly from its human homologue. Here, we present an approach that utilizes ScRad52 to enhance HR in human cells containing a specific substrate for recombination. Clones of HeLa cells were produced expressing functional ScRad52. These cells showed enhanced resistance to DNA damaging treatments and revealed a different distribution of Rad51 foci (a marker of recombination complex formation). More significantly, ScRad52 expression resulted in an up to 37-fold increase in gene targeting by HR. In the same cells, random integration of exogenous DNA was significantly reduced, consistent with the view that HR and non-homologous end joining are alternative competing pathways. Expression of ScRad52 could offer a major improvement for experiments requiring gene targeting by HR, both in basic research and in gene therapy studies.
当外源DNA稳定导入哺乳动物细胞时,它通常随机整合到基因组中,只有一小部分进入同源重组(HR)途径。Rad51/Rad52复合物是真核生物中外源DNA处理的主要参与者,在修复系统的选择中起关键作用。在酿酒酵母中,首选的途径是由Rad52(ScRad52)介导的HR,它与其人类同源物略有不同。在这里,我们提出了一种利用ScRad52增强含有特定重组底物的人类细胞中HR的方法。产生了表达功能性ScRad52的HeLa细胞克隆。这些细胞对DNA损伤处理表现出增强的抗性,并显示出Rad51焦点(重组复合物形成的标志物)的不同分布。更重要的是,ScRad52的表达导致HR介导的基因靶向增加了37倍。在同一细胞中,外源DNA的随机整合显著减少,这与HR和非同源末端连接是相互竞争的替代途径的观点一致。ScRad52的表达可以为基础研究和基因治疗研究中需要通过HR进行基因靶向的实验带来重大改进。