Advanced Genomics Technology Lab, Complete Genomics Inc., 2904 Orchard Pkwy, San Jose, California, USA.
Institute of Biochemistry, BGI-Shenzhen, Shenzhen, China.
DNA Res. 2019 Feb 1;26(1):45-53. doi: 10.1093/dnares/dsy037.
Nucleic acid ligases are crucial enzymes that repair breaks in DNA or RNA during synthesis, repair and recombination. Various genomic tools have been developed using the diverse activities of DNA/RNA ligases. Herein, we demonstrate a non-conventional ability of T4 DNA ligase to insert 5' phosphorylated blunt-end double-stranded DNA to DNA breaks at 3'-recessive ends, gaps, or nicks to form a Y-shaped 3'-branch structure. Therefore, this base pairing-independent ligation is termed 3'-branch ligation (3'BL). In an extensive study of optimal ligation conditions, the presence of 10% PEG-8000 in the ligation buffer significantly increased ligation efficiency to more than 80%. Ligation efficiency was slightly varied between different donor and acceptor sequences. More interestingly, we discovered that T4 DNA ligase efficiently ligated DNA to the 3'-recessed end of RNA, not to that of DNA, in a DNA/RNA hybrid, suggesting a ternary complex formation preference of T4 DNA ligase. These novel properties of T4 DNA ligase can be utilized as a broad molecular technique in many important genomic applications, such as 3'-end labelling by adding a universal sequence; directional tagmentation for NGS library construction that achieve theoretical 100% template usage; and targeted RNA NGS libraries with mitigated structure-based bias and adapter dimer problems.
核酸连接酶是在 DNA 或 RNA 合成、修复和重组过程中修复 DNA 或 RNA 断裂的关键酶。已经开发了各种基因组工具,利用 DNA/RNA 连接酶的多种活性。在此,我们证明了 T4 DNA 连接酶的一种非传统能力,即能够将 5' 磷酸化的平头双链 DNA 插入到 DNA 断裂的 3'-隐蔽末端、缺口或小裂口处,形成 Y 形 3'-分支结构。因此,这种不依赖碱基配对的连接被称为 3'-分支连接(3'BL)。在对最佳连接条件的广泛研究中,连接缓冲液中存在 10% 的 PEG-8000 可将连接效率显著提高到 80%以上。不同供体和受体序列之间的连接效率略有差异。更有趣的是,我们发现 T4 DNA 连接酶在 DNA/RNA 杂合体中能够有效地将 DNA 连接到 RNA 的 3'-隐蔽末端,而不是 DNA 的 3'-隐蔽末端,这表明 T4 DNA 连接酶形成三元复合物的偏好性。T4 DNA 连接酶的这些新特性可作为一种广泛的分子技术应用于许多重要的基因组应用中,例如通过添加通用序列进行 3'-末端标记;用于 NGS 文库构建的定向标签化,可实现理论上 100%的模板利用率;以及具有减轻结构基偏向和适配器二聚体问题的靶向 RNA NGS 文库。