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首页> 外文期刊>BMC Molecular Biology >Mutational analysis of an archaeal minichromosome maintenance protein exterior hairpin reveals critical residues for helicase activity and DNA binding
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Mutational analysis of an archaeal minichromosome maintenance protein exterior hairpin reveals critical residues for helicase activity and DNA binding

机译:对古细菌微染色体维持蛋白外部发夹的突变分析揭示了解旋酶活性和DNA结合的关键残基

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Background The mini-chromosome maintenance protein (MCM) complex is an essential replicative helicase for DNA replication in Archaea and Eukaryotes. While the eukaryotic complex consists of six homologous proteins (MCM2-7), the archaeon Sulfolobus solfataricus has only one MCM protein (ssoMCM), six subunits of which form a homohexamer. We have recently reported a 4.35? crystal structure of the near full-length ssoMCM. The structure reveals a total of four β-hairpins per subunit, three of which are located within the main channel or side channels of the ssoMCM hexamer model generated based on the symmetry of the N-terminal Methanothermobacter thermautotrophicus (mtMCM) structure. The fourth β-hairpin, however, is located on the exterior of the hexamer, near the exit of the putative side channels and next to the ATP binding pocket. Results In order to better understand this hairpin's role in DNA binding and helicase activity, we performed a detailed mutational and biochemical analysis of nine residues on this exterior β-hairpin (EXT-hp). We examined the activities of the mutants related to their helicase function, including hexamerization, ATPase, DNA binding and helicase activities. The assays showed that some of the residues on this EXT-hp play a role for DNA binding as well as for helicase activity. Conclusions These results implicate several current theories regarding helicase activity by this critical hexameric enzyme. As the data suggest that EXT-hp is involved in DNA binding, the results reported here imply that the EXT-hp located near the exterior exit of the side channels may play a role in contacting DNA substrate in a manner that affects DNA unwinding.
机译:背景微型染色体维持蛋白(MCM)复合物是古细菌和真核生物中DNA复制的必需复制解旋酶。真核生物复合物由六个同源蛋白(MCM2-7)组成,古细菌Sulfolobus solfataricus仅具有一个MCM蛋白(ssoMCM),其中六个亚基形成同型六聚体。我们最近报告了4.35?全长ssoMCM的晶体结构。该结构显示每个亚基共有四个β-发夹结构,其中三个位于基于N端甲烷嗜热杆菌自养营养菌(mtMCM)结构对称性生成的ssoMCM六聚体模型的主通道或侧通道内。但是,第四个β-发夹位于六聚体的外部,靠近假定的侧通道的出口,靠近ATP结合袋。结果为了更好地了解这种发夹在DNA结合和解旋酶活性中的作用,我们对外部β-发夹(EXT-hp)上的9个残基进行了详细的突变和生化分析。我们检查了与它们的解旋酶功能有关的突变体的活性,包括六聚化,ATPase,DNA结合和解旋酶活性。分析表明,该EXT-hp上的某些残基对DNA结合以及解旋酶活性均起作用。结论这些结果暗示了有关该关键六聚酶的解旋酶活性的几种当前理论。由于数据表明EXT-hp与DNA结合有关,因此此处报道的结果表明,位于侧通道外部出口附近的EXT-hp可能以接触DNA底物的方式影响DNA展开。

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