Alam Rowshon, Thazhathveetil Arun Kalliat, Li Hong, Seidman Michael M
Girindus America, Inc., Cincinnati, OH, USA.
Methods Mol Biol. 2014;1114:103-13. doi: 10.1007/978-1-62703-761-7_7.
Strategies for site-specific modulation of genomic sequences in mammalian cells require two components. One must be capable of recognizing and activating a specific target sequence in vivo, driving that site into an exploitable repair pathway. Information is transferred to the site via participation in the pathway by the second component, a donor nucleic acid, resulting in a permanent change in the target sequence. We have developed biologically active triple helix forming oligonucleotides (TFOs) as site-specific gene targeting reagents. These TFOs, linked to DNA reactive compounds (such as a cross-linking agent), activate pathways that can engage informational donors. We have used the combination of a psoralen-TFO and single strand oligonucleotide donors to generate novel cell lines with directed sequence changes at the target site. Here we describe the synthesis and purification of bioactive psoralen-linked TFOs, their co-introduction into mammalian cells with donor nucleic acids, and the identification of cells with sequence conversion of the target site. We have emphasized details in the synthesis and purification of the oligonucleotides that are essential for preparation of reagents with optimal activity.
在哺乳动物细胞中对基因组序列进行位点特异性调控的策略需要两个组件。一个组件必须能够在体内识别并激活特定的靶序列,将该位点驱动到可利用的修复途径中。信息通过第二个组件(供体核酸)参与该途径传递到该位点,从而导致靶序列发生永久性变化。我们已经开发出具有生物活性的三链螺旋形成寡核苷酸(TFO)作为位点特异性基因靶向试剂。这些与DNA反应性化合物(如交联剂)相连的TFO激活能够结合信息供体的途径。我们已经使用补骨脂素-TFO和单链寡核苷酸供体的组合在靶位点产生具有定向序列变化的新型细胞系。在此,我们描述了具有生物活性的补骨脂素连接的TFO的合成和纯化、它们与供体核酸共同导入哺乳动物细胞以及鉴定具有靶位点序列转换的细胞。我们强调了寡核苷酸合成和纯化中的细节,这些细节对于制备具有最佳活性的试剂至关重要。