Rajão M A, Passos-Silva D G, DaRocha W D, Franco G R, Macedo A M, Pena S D J, Teixeira S M, Machado C R
Departamento de Bioquímica e Imunologia, ICB, Universidade Federal de Minas Gerais, Av. Antônio Carlos, 6627, Caixa Postal 486, Belo Horizonte 30161-970, MG, Brazil.
Mol Microbiol. 2009 Jan;71(1):185-97. doi: 10.1111/j.1365-2958.2008.06521.x. Epub 2008 Nov 6.
DNA polymerase kappa (Pol kappa) is a low-fidelity polymerase that has the ability to bypass several types of lesions. The biological role of this enzyme, a member of the DinB subfamily of Y-family DNA polymerases, has remained elusive. In this report, we studied one of the two copies of Pol kappa from the protozoan Trypanosoma cruzi (TcPol kappa). The role of this TcPol kappa copy was investigated by analysing its subcellular localization, its activities in vitro, and performing experiments with parasites that overexpress this polymerase. The TcPOLK sequence has the N-terminal extension which is present only in eukaryotic DinB members, but its C-terminal region is more similar to prokaryotic and archaeal counterparts since it lacks C(2)HC motifs and PCNA interaction domain. Our results indicate that in contrast to its previously described orthologues, this polymerase is localized to mitochondria. The overexpression of TcPOLK increases T. cruzi resistance to hydrogen peroxide, and in vitro polymerization assays revealed that TcPol kappa efficiently bypasses 8-oxoguanine lesions. Remarkably, our results also demonstrate that the DinB subfamily of polymerases can participate in homologous recombination, based on our findings that TcPol kappa increases T. cruzi resistance to high doses of gamma irradiation and zeocin and can catalyse DNA synthesis within recombination intermediates.
DNA聚合酶κ(Pol κ)是一种低保真度聚合酶,能够绕过多种类型的损伤。这种酶是Y家族DNA聚合酶DinB亚家族的成员之一,其生物学作用一直难以捉摸。在本报告中,我们研究了原生动物克氏锥虫(TcPol κ)中Pol κ的两个拷贝之一。通过分析其亚细胞定位、体外活性以及对过表达这种聚合酶的寄生虫进行实验,研究了这个TcPol κ拷贝的作用。TcPOLK序列具有仅在真核生物DinB成员中存在的N端延伸,但它的C端区域与原核生物和古细菌的对应区域更相似,因为它缺乏C(2)HC基序和PCNA相互作用结构域。我们的结果表明,与其先前描述的直系同源物不同,这种聚合酶定位于线粒体。TcPOLK的过表达增加了克氏锥虫对过氧化氢的抗性,体外聚合分析表明TcPol κ能有效地绕过8-氧鸟嘌呤损伤。值得注意的是,我们的结果还表明,基于我们的发现,即TcPol κ增加了克氏锥虫对高剂量γ射线照射和博来霉素的抗性,并且可以催化重组中间体中的DNA合成,聚合酶的DinB亚家族可以参与同源重组。