Pitcher Robert S, Brissett Nigel C, Picher Angel J, Andrade Paula, Juarez Raquel, Thompson Darren, Fox Gavin C, Blanco Luis, Doherty Aidan J
Genome Damage and Stability Centre, University of Sussex, Brighton BN1 9RQ, UK.
J Mol Biol. 2007 Feb 16;366(2):391-405. doi: 10.1016/j.jmb.2006.10.046. Epub 2006 Oct 20.
Non homologous end-joining (NHEJ)-mediated repair of DNA double-strand breaks in prokaryotes requires Ku and a specific multidomain DNA ligase (LigD). We present crystal structures of the primase/polymerisation domain (PolDom) of Mycobacterium tuberculosis LigD, alone and complexed with nucleotides. The PolDom structure combines the general fold of the archaeo-eukaryotic primase (AEP) superfamily with additional loops and domains that together form a deep cleft on the surface, likely used for DNA binding. Enzymatic analysis indicates that the PolDom of LigD, even in the absence of accessory domains and Ku proteins, has the potential to recognise DNA end-joining intermediates. Strikingly, one of the main signals for the specific and efficient binding of PolDom to DNA is the presence of a 5'-phosphate group, located at the single/double-stranded junction at both gapped and 3'-protruding DNA molecules. Although structurally unrelated, Pol lambda and Pol mu, the two eukaryotic DNA polymerases involved in NHEJ, are endowed with a similar capacity to bind a 5'-phosphate group. Other properties that are beneficial for NHEJ, such as the ability to generate template distortions and realignments of the primer, displayed by Pol lambda and Pol mu, are shared by the PolDom of bacterial LigD. In addition, PolDom can perform non-mutagenic translesion synthesis on termini containing modified bases. Significantly, ribonucleotide insertion appears to be a recurrent theme associated with NHEJ, maximised in this case by the deployment of a dedicated primase, although its in vivo relevance is unknown.
原核生物中DNA双链断裂的非同源末端连接(NHEJ)介导的修复需要Ku和一种特定的多结构域DNA连接酶(LigD)。我们展示了结核分枝杆菌LigD的引发酶/聚合结构域(PolDom)单独以及与核苷酸复合的晶体结构。PolDom结构将古菌 - 真核生物引发酶(AEP)超家族的一般折叠与额外的环和结构域结合在一起,这些环和结构域共同在表面形成一个深裂缝,可能用于DNA结合。酶学分析表明,即使没有辅助结构域和Ku蛋白,LigD的PolDom也有识别DNA末端连接中间体的潜力。引人注目的是,PolDom与DNA特异性和高效结合的主要信号之一是在缺口和3'突出的DNA分子的单链/双链连接处存在5'-磷酸基团。尽管在结构上不相关,但参与NHEJ的两种真核DNA聚合酶Pol λ和Pol μ具有类似的结合5'-磷酸基团的能力。细菌LigD的PolDom也具有其他对NHEJ有益的特性,例如产生模板扭曲和引物重新排列的能力,这是Pol λ和Pol μ所具有的。此外,PolDom可以在含有修饰碱基的末端进行非诱变跨损伤合成。值得注意的是,核糖核苷酸插入似乎是与NHEJ相关的一个反复出现的主题,在这种情况下,通过部署一种专用的引发酶使其最大化,尽管其体内相关性尚不清楚。