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Total synthesis of long DNA sequences: Synthesis of a contiguous 32-kb polyketide synthase gene cluster

机译:长DNA序列的总合成:连续的32-kb聚酮合酶基因簇的合成

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摘要

To exploit the huge potential of whole-genome sequence information, the ability to efficiently synthesize long, accurate DNA sequences is becoming increasingly important. An approach proposed toward this end involves the synthesis of ≈5-kb segments of DNA, followed by their assembly into longer sequences by conventional cloning methods [Smith, H. O., Hutchinson, C. A., III, Pfannkoch, C. & Venter, J. C. (2003) Proc. Natl. Acad. Sci. USA 100, 15440–15445]. The major current impediment to the success of this tactic is the difficulty of building the ≈5-kb components accurately, efficiently, and rapidly from short synthetic oligonucleotide building blocks. We have developed and implemented a strategy for the high-throughput synthesis of long, accurate DNA sequences. Unpurified 40-base synthetic oligonucleotides are built into 500- to 800-bp “synthons” with low error frequency by automated PCR-based gene synthesis. By parallel processing, these synthons are efficiently joined into multisynthon ≈5-kb segments by using only three endonucleases and “ligation by selection.” These large segments can be subsequently assembled into very long sequences by conventional cloning. We validated the approach by building a synthetic 31,656-bp polyketide synthase gene cluster whose functionality was demonstrated by its ability to produce the megaenzyme and its polyketide product in Escherichia coli.
机译:为了开发全基因组序列信息的巨大潜力,有效合成长而准确的DNA序列的能力变得越来越重要。为此目的提出的一种方法涉及合成约5kb的DNA片段,然后通过常规克隆方法将它们组装成更长的序列[Smith,HO,Hutchinson,CA,III,Pfannkoch,C.&Venter,JC(2003 )过程Natl。学院科学美国100,15440–15445]。当前,该策略成功的主要障碍是难以从短的合成寡核苷酸构建模块中准确,高效和快速地构建≈5-kb的组分。我们已经开发并实施了用于长而准确的DNA序列的高通量合成的策略。通过基于PCR的自动基因合成,以低错误频率将未纯化的40个碱基的合成寡核苷酸构建到500-800 bp的“合成子”中。通过并行处理,这些合成子仅使用三种核酸内切酶并“通过选择连接”即可有效地连接到多合成子≈5-kb的片段中。随后可以通过常规克隆将这些大片段组装成非常长的序列。我们通过构建合成的31,656-bp聚酮化合物合酶基因簇来验证该方法,该簇的功能通过在大肠杆菌中产生大酶及其聚酮产物的能力来证明。

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