Department of Biomedical Engineering, Rutgers University, Piscataway, New Jersey, USA.
Institute of Cell Engineering, Division of Immunology, Department of Pathology, Johns Hopkins University, Baltimore, Maryland, USA.
Biotechnol J. 2022 Feb;17(2):e2100240. doi: 10.1002/biot.202100240. Epub 2021 Dec 6.
In the attempt to bridge the widening gap from DNA sequence to biological function, we developed a novel methodology to assemble Long-Adapter Single-Strand Oligonucleotide (LASSO) probe libraries that enabled the massively multiplexed capture of kilobase-sized DNA fragments for downstream long read DNA sequencing or expression. This method uses short DNA oligonucleotides (pre-LASSO probes) and a plasmid vector that supplies the linker sequence for the mature LASSO probe through Cre-LoxP intramolecular recombination. This strategy generates high quality LASSO probes libraries (≈46% of correct probes). We performed NGS analysis of the post-capture PCR amplification of DNA circles obtained from the LASSO capture of 3087 Escherichia coli ORFs spanning from 400- to 5000 bp. The median enrichment of all targeted ORFs versus untargeted ORFs was 30 times. For ORFs up to 1kb in size, targeted ORFs were enriched up to a median of 260-fold. Here, we show that LASSO probes obtained in this manner, were able to capture full-length open reading frames from total human cDNA. Furthermore, we show that the LASSO capture specificity and sensitivity is sufficient for target capture from total human genomic DNA template. This technology can be used for the preparation of long-read sequencing libraries and for massively multiplexed cloning of human sequences.
为了弥合从 DNA 序列到生物功能的日益扩大的差距,我们开发了一种新的方法来组装长接头单链寡核苷酸(LASSO)探针文库,该文库能够大规模捕获大片段大小的 DNA 片段,用于下游长读 DNA 测序或表达。该方法使用短 DNA 寡核苷酸(预 LASSO 探针)和质粒载体,通过 Cre-LoxP 分子内重组为成熟的 LASSO 探针提供连接序列。该策略产生了高质量的 LASSO 探针文库(约 46%的正确探针)。我们对通过 LASSO 捕获从 400-5000bp 大小的 3087 个大肠杆菌 ORF 获得的 DNA 环的捕获后 PCR 扩增进行了 NGS 分析。所有靶向 ORF 相对于非靶向 ORF 的平均富集度为 30 倍。对于大小达 1kb 的 ORF,靶向 ORF 的富集度中位数达到 260 倍。在此,我们表明以这种方式获得的 LASSO 探针能够从总人 cDNA 中捕获全长开放阅读框。此外,我们表明 LASSO 捕获的特异性和灵敏度足以从总人基因组 DNA 模板中进行靶标捕获。该技术可用于长读测序文库的制备和人类序列的大规模多重克隆。