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Computer design of obligate heterodimer meganucleases allows efficient cutting of custom DNA sequences

机译:专性异二聚体大范围核酸酶的计算机设计可有效切割定制的DNA序列

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Meganucleases cut long (>12 bp) unique sequences in genomes and can be used to induce targeted genome engineering by homologous recombination in the vicinity of their cleavage site. However, the use of natural meganucleases is limited by the repertoire of their target sequences, and considerable efforts have been made to engineer redesigned meganucleases cleaving chosen targets. Homodimeric meganucleases such as I-CreI have provided a scaffold, but can only be modified to recognize new quasi-palindromic DNA sequences, limiting their general applicability. Other groups have used dimer-interface redesign and peptide linkage to control heterodimerization between related meganucleases such as I-DmoI and I-CreI, but until now there has been no application of this aimed specifically at the scaffolds from existing combinatorial libraries of I-CreI. Here, we show that engineering meganucleases to form obligate heterodimers results in functional endonucleases that cut non-palindromic sequences. The protein design algorithm (FoldX v2.7) was used to design specific heterodimer interfaces between two meganuclease monomers, which were themselves engineered to recognize different DNA sequences. The new monomers favour functional heterodimer formation and prevent homodimer site recognition. This design massively increases the potential repertoire of DNA sequences that can be specifically targeted by designed I-CreI meganucleases and opens the way to safer targeted genome engineering.
机译:大范围核酸酶在基因组中切割了长的(> 12 bp)独特序列,可用于通过其切割位点附近的同源重组来诱导靶向基因组工程。但是,天然大范围核酸酶的使用受到其靶序列库的限制,并且已经进行了大量的努力来设计重新设计的大范围核酸酶以切割所选的靶。同源二聚体大范围核酸酶(例如I-CreI)提供了一个支架,但是只能进行修饰以识别新的准回文DNA序列,从而限制了它们的普遍适用性。其他小组已使用二聚体界面重新设计和肽键连接来控制相关大范围核酸酶(例如I-DmoI和I-CreI)之间的异二聚化作用,但直到现在,还没有专门针对现有I-CreI组合文库中的支架进行此应用。在这里,我们表明工程化的大范围核酸酶形成专性异二聚体会导致功能性核酸内切酶切割非回文序列。蛋白质设计算法(FoldX v2.7)用于设计两个大范围核酸酶单体之间的特定异二聚体界面,这些单体本身经工程设计可识别不同的DNA序列。新的单体有利于功能性异二聚体的形成并阻止同二聚体位点的识别。这种设计极大地增加了被设计的I-CreI大范围核酸酶可以特异性靶向的DNA序列的潜在库,并为更安全的靶向基因组工程开辟了道路。

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