Kukshal Vandna, Kim In-Kwon, Hura Gregory L, Tomkinson Alan E, Tainer John A, Ellenberger Tom
Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, Saint Louis, MO 63110, USA.
Life Science Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.
Nucleic Acids Res. 2015 Aug 18;43(14):7021-31. doi: 10.1093/nar/gkv652. Epub 2015 Jun 29.
Mammalian DNA ligase III (LigIII) functions in both nuclear and mitochondrial DNA metabolism. In the nucleus, LigIII has functional redundancy with DNA ligase I whereas LigIII is the only mitochondrial DNA ligase and is essential for the survival of cells dependent upon oxidative respiration. The unique LigIII zinc finger (ZnF) domain is not required for catalytic activity but senses DNA strand breaks and stimulates intermolecular ligation of two DNAs by an unknown mechanism. Consistent with this activity, LigIII acts in an alternative pathway of DNA double strand break repair that buttresses canonical non-homologous end joining (NHEJ) and is manifest in NHEJ-defective cancer cells, but how LigIII acts in joining intermolecular DNA ends versus nick ligation is unclear. To investigate how LigIII efficiently joins two DNAs, we developed a real-time, fluorescence-based assay of DNA bridging suitable for high-throughput screening. On a nicked duplex DNA substrate, the results reveal binding competition between the ZnF and the oligonucleotide/oligosaccharide-binding domain, one of three domains constituting the LigIII catalytic core. In contrast, these domains collaborate and are essential for formation of a DNA-bridging intermediate by adenylated LigIII that positions a pair of blunt-ended duplex DNAs for efficient and specific intermolecular ligation.
哺乳动物DNA连接酶III(LigIII)在细胞核和线粒体DNA代谢中均发挥作用。在细胞核中,LigIII与DNA连接酶I存在功能冗余,而LigIII是唯一的线粒体DNA连接酶,对于依赖氧化呼吸的细胞存活至关重要。独特的LigIII锌指(ZnF)结构域对于催化活性并非必需,但能感知DNA链断裂,并通过未知机制刺激两条DNA的分子间连接。与这种活性一致,LigIII在DNA双链断裂修复的一条替代途径中发挥作用,该途径支持经典的非同源末端连接(NHEJ),并在NHEJ缺陷的癌细胞中表现出来,但LigIII如何作用于连接分子间DNA末端与切口连接尚不清楚。为了研究LigIII如何有效地连接两条DNA,我们开发了一种适用于高通量筛选的基于荧光的实时DNA桥接检测方法。在带切口的双链DNA底物上,结果揭示了ZnF与寡核苷酸/寡糖结合结构域之间的结合竞争,寡核苷酸/寡糖结合结构域是构成LigIII催化核心的三个结构域之一。相比之下,这些结构域协同作用,对于腺苷化的LigIII形成DNA桥接中间体至关重要,该中间体将一对平端双链DNA定位以进行高效且特异性的分子间连接。