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Iterative capped assembly: rapid and scalable synthesis of repeat-module DNA such as TAL effectors from individual monomers

机译:封闭式组装:从单个单体快速且可扩展地合成重复模块DNA(例如TAL效应子)

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摘要

DNA built from modular repeats presents a challenge for gene synthesis. We present a solid surface-based sequential ligation approach, which we refer to as iterative capped assembly (ICA), that adds DNA repeat monomers individually to a growing chain while using hairpin ‘capping’ oligonucleotides to block incompletely extended chains, greatly increasing the frequency of full-length final products. Applying ICA to a model problem, construction of custom transcription activator-like effector nucleases (TALENs) for genome engineering, we demonstrate efficient synthesis of TALE DNA-binding domains up to 21 monomers long and their ligation into a nuclease-carrying backbone vector all within 3 h. We used ICA to synthesize 20 TALENs of varying DNA target site length and tested their ability to stimulate gene editing by a donor oligonucleotide in human cells. All the TALENS show activity, with the ones >15 monomers long tending to work best. Since ICA builds full-length constructs from individual monomers rather than large exhaustive libraries of pre-fabricated oligomers, it will be trivial to incorporate future modified TALE monomers with improved or expanded function or to synthesize other types of repeat-modular DNA where the diversity of possible monomers makes exhaustive oligomer libraries impractical.
机译:由模块重复序列构建的DNA提出了基因合成的挑战。我们提出了一种基于表面的固体顺序连接方法,我们将其称为迭代加帽组装(ICA),该方法将DNA重复单体分别添加到一条增长的链中,同时使用发夹“加帽”的寡核苷酸来阻断不完全延伸的链,从而大大增加了频率全长最终产品。将ICA应用于模型问题,构建用于基因组工程的定制转录激活因子样效应子核酸酶(TALEN),我们证明了长达21个单体的TALE DNA结合域的有效合成,并将它们连接到携带核酸酶的骨架载体中3 h。我们使用ICA合成了20个具有不同DNA靶位点长度的TALEN,并测试了它们刺激人细胞中供体寡核苷酸进行基因编辑的能力。所有TALENS均显示出活性,其中> 15个单体长的单体往往表现最佳。由于ICA是从单个单体而不是大型的预制低聚物文库中构建全长构建体,因此,掺入未来具有改进或扩展功能的修饰TALE单体或合成其他类型的重复模块DNA的多样性将是微不足道的。可能的单体使详尽的低聚物库不切实际。

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