State Key Laboratory of Bioelectronics, Southeast University, Sipailou 2, Nanjing, 210096, China.
BMC Genomics. 2018 Feb 13;19(1):143. doi: 10.1186/s12864-018-4530-3.
Next-generation sequencing (NGS) is fundamental to the current biological and biomedical research. Construction of sequencing library is a key step of NGS. Therefore, various library construction methods have been explored. However, the current methods are still limited by some shortcomings.
This study developed a new NGS library construction method, Single strand Adaptor Library Preparation (SALP), by using a novel single strand adaptor (SSA). SSA is a double-stranded oligonucleotide with a 3' overhang of 3 random nucleotides, which can be efficiently ligated to the 3' end of single strand DNA by T4 DNA ligase. SALP can be started with any denatured DNA fragments such as those sheared by Tn5 tagmentation, enzyme digestion and sonication. When started with Tn5-tagmented chromatin, SALP can overcome a key limitation of ATAC-seq and become a high-throughput NGS library construction method, SALP-seq, which can be used to comparatively characterize the chromatin openness state of multiple cells unbiasly. In this way, this study successfully characterized the comparative chromatin openness states of four different cell lines, including GM12878, HepG2, HeLa and 293T, with SALP-seq. Similarly, this study also successfully characterized the chromatin openness states of HepG2 cells with SALP-seq by using 10 to 500 cells.
This study developed a new NGS library construction method, SALP, by using a novel kind of single strand adaptor (SSA), which should has wide applications in the future due to its unique performance.
下一代测序(NGS)是当前生物和生物医学研究的基础。测序文库的构建是 NGS 的关键步骤。因此,已经探索了各种文库构建方法。然而,目前的方法仍然受到一些缺点的限制。
本研究通过使用新型单链接头(SSA)开发了一种新的 NGS 文库构建方法,即单链接头文库制备(SALP)。SSA 是一种双链寡核苷酸,其 3' 端有 3 个随机核苷酸的突出,可通过 T4 DNA 连接酶有效地连接到单链 DNA 的 3' 端。SALP 可以从任何变性 DNA 片段开始,例如 Tn5 标签酶切、酶切和超声处理产生的片段。当从 Tn5 标记的染色质开始时,SALP 可以克服 ATAC-seq 的一个关键限制,并成为一种高通量的 NGS 文库构建方法,SALP-seq 可用于无偏地比较多个细胞的染色质开放性状态。通过这种方式,本研究成功地用 SALP-seq 表征了四种不同细胞系(包括 GM12878、HepG2、HeLa 和 293T)的比较染色质开放性状态。同样,本研究也成功地用 SALP-seq 用 10 到 500 个细胞表征了 HepG2 细胞的染色质开放性状态。
本研究通过使用新型单链接头(SSA)开发了一种新的 NGS 文库构建方法 SALP,由于其独特的性能,该方法在未来应有广泛的应用。