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Amplification and assembly of chip-eluted DNA (AACED): a method for high-throughput gene synthesis

机译:芯片洗脱DNA(AACED)的扩增和组装:一种高通量基因合成的方法

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A basic problem in gene synthesis is the acquisition of many short oligonucleotide sequences needed for the assembly of genes. Photolithographic methods for the massively parallel synthesis of high-density oligonucleotide arrays provides a potential source, once appropriate methods have been devised for their elution in forms suitable for enzyme-catalyzed assembly. Here, we describe a method based on the photolithographic synthesis of long (>60mers) single-stranded oligonucleotides, using a modified maskless array synthesizer. Once the covalent bond between the DNA and the glass surface is cleaved, the full-length oligonucleotides are selected and amplified using PCR. After cleavage of flanking primer sites, a population of unique, internal 40mer dsDNA sequences are released and are ready for use in biological applications. Subsequent gene assembly experiments using this DNA pool were performed and were successful in creating longer DNA fragments. This is the first report demonstrating the use of eluted chip oligonucleotides in biological applications such as PCR and assembly PCR.
机译:基因合成中的基本问题是获得基因组装所需的许多短寡核苷酸序列。一旦设计了合适的洗脱方法以适合酶催化组装的形式,用于高密度寡核苷酸阵列的大规模平行合成的光刻方法提供了潜在的来源。在这里,我们描述了一种基于光刻的长(> 60mers)单链寡核苷酸光刻合成方法,该方法使用了改进的无掩模阵列合成仪。一旦DNA和玻璃表面之间的共价键断裂,就选择全长寡核苷酸并使用PCR进行扩增。切割侧翼引物位点后,将释放一组独特的内部40mer dsDNA序列,并准备用于生物学应用。随后进行了使用该DNA池的基因组装实验,并成功创建了更长的DNA片段。这是第一份证明洗脱的芯片寡核苷酸在生物学应用(例如PCR和组装PCR)中的使用的报告。

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