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Assisted large fragment insertion by Red/ET-recombination (ALFIRE) - an alternative and enhanced method for large fragment recombineering

机译:通过Red / ET-recombination(ALFIRE)辅助大片段插入-大片段重组的另一种增强方法

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Functional genomics require manipulation and modification of large fragments of the genome. Such manipulation has only recently become more efficient due to the discovery of different techniques based on homologous recombination. However, certain limitations of these strategies still exist since insertion of homology arms (HAs) is often based on amplification of DNA sequences with PCR. Large quantities of PCR products longer than 4-5 kb can be difficult to obtain and the risk of mutations or mismatches increases with the size of the template that is being amplified. This can be overcome by adding HAs by conventional cloning techniques, but with large fragments such as entire genes the procedure becomes time-consuming and tedious. Second, homologous recombination techniques often require addition of antibiotic selection genes, which may not be desired in the final construct. Here, we report a method to overcome the size and selection marker limitations by a two- or three-step procedure. The method can insert any fragment into small or large episomes, without the need of an antibiotic selection gene. We have humanized the mouse luteinizing hormone receptor gene (Lhcgr) by inserting a similar to 55 kb fragment from a BAC clone containing the human Lhcgr gene into a 170 kb BAC clone comprising the entire mouse orthologue. The methodology is based on the rationale to introduce a counter-selection cassette flanked by unique restriction sites and HAs for the insert, into the vector that is modified. Upon enzymatic digestion, in vitro or in Escherichia coli, double-strand breaks are generated leading to recombination between the vector and the insert. The procedure described here is thus an additional powerful tool for manipulating large and complex genomic fragments.
机译:功能基因组学需要对基因组大片段进行操纵和修饰。由于发现了基于同源重组的不同技术,这种操纵直到最近才变得更加有效。但是,这些策略的某些局限性仍然存在,因为同源臂(HAs)的插入通常基于PCR扩增DNA序列。可能难以获得超过4-5 kb的大量PCR产物,并且突变或错配的风险会随着被扩增模板的大小而增加。可以通过常规克隆技术添加HA来克服这一问题,但是对于大片段(例如完整基因),此过程将非常耗时且乏味。其次,同源重组技术通常需要添加抗生素选择基因,这在最终构建体中可能并不需要。在这里,我们报告了一种通过两步或三步过程克服尺寸和选择标记限制的方法。该方法可以将任何片段插入小或大的附加体中,而无需抗生素选择基因。我们通过将包含人Lhcgr基因的BAC克隆中的类似于55 kb的片段插入包含整个小鼠直系同源物的170 kb BAC克隆中,使小鼠黄体生成素受体基因(Lhcgr)人源化。该方法基于以下原理:将侧翼为插入的独特限制性位点和HA的反选择盒带到修饰的载体中。在体外或在大肠杆菌中进行酶消化后,会产生双链断裂,从而导致载体和插入片段之间发生重组。因此,此处描述的过程是操作大型复杂基因组片段的另一种强大工具。

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