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Enzymes involved in DNA ligation and end-healing in the radioresistant bacterium Deinococcus radiodurans

机译:耐辐射细菌Deinococcus radiodurans中涉及DNA连接和最终修复的酶

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Background Enzymes involved in DNA metabolic events of the highly radioresistant bacterium Deinococcus radiodurans are currently examined to understand the mechanisms that protect and repair the Deinococcus radiodurans genome after extremely high doses of γ-irradiation. Although several Deinococcus radiodurans DNA repair enzymes have been characterised, no biochemical data is available for DNA ligation and DNA endhealing enzymes of Deinococcus radiodurans so far. DNA ligases are necessary to seal broken DNA backbones during replication, repair and recombination. In addition, ionizing radiation frequently leaves DNA strand-breaks that are not feasible for ligation and thus require end-healing by a 5'-polynucleotide kinase or a 3'-phosphatase. We expect that DNA ligases and end-processing enzymes play an important role in Deinococcus radiodurans DNA strand-break repair. Results In this report, we describe the cloning and expression of a Deinococcus radiodurans DNA ligase in Escherichia coli. This enzyme efficiently catalyses DNA ligation in the presence of Mn(II) and NAD+ as cofactors and lysine 128 was found to be essential for its activity. We have also analysed a predicted second DNA ligase from Deinococcus radiodurans that is part of a putative DNA repair operon and shows sequence similarity to known ATP-dependent DNA ligases. We show that this enzyme possesses an adenylyltransferase activity using ATP, but is not functional as a DNA ligase by itself. Furthermore, we identified a 5'-polynucleotide kinase similar to human polynucleotide kinase that probably prepares DNA termini for subsequent ligation. Conclusion Deinococcus radiodurans contains a standard bacterial DNA ligase that uses NAD+ as a cofactor. Its enzymatic properties are similar to E. coli DNA ligase except for its preference for Mn(II) as a metal cofactor. The function of a putative second DNA ligase remains unclear, but its adenylyltransferase activity classifies it as a member of the nucleotidyltransferase family. Characterization of another protein from the same operon revealed a 5'-polynucleotide kinase with a possible role in DNA strand-break repair.
机译:背景技术目前正在检查与高度抗辐射的细菌Deinococcus radiodurans的DNA代谢事件有关的酶,以了解在极高剂量的γ射线辐照后保护和修复Radinococcus radiodurans基因组的机制。尽管已鉴定出几种放射性杜鹃球菌DNA修复酶,但到目前为止,尚无可用于放射性杜鹃球菌DNA连接和DNA修复酶的生化数据。 DNA连接酶对于在复制,修复和重组过程中密封断裂的DNA主链是必需的。另外,电离辐射经常留下DNA链断裂,这对于连接是不可行的,因此需要通过5'-多核苷酸激酶或3'-磷酸酶进行末端修复。我们期望DNA连接酶和最终加工酶在Deinococcus radiodurans DNA链断裂修复中起重要作用。结果在本报告中,我们描述了在大肠杆菌中克隆和表达放射性杜鹃球菌DNA连接酶。该酶在作为辅助因子的Mn(II)和NAD + 的存在下有效催化DNA连接,赖氨酸128被发现对其活性至关重要。我们还分析了预测的第二个来自杜鹃球菌的DNA连接酶,它是推定的DNA修复操纵子的一部分,并显示与已知的ATP依赖性DNA连接酶的序列相似性。我们显示该酶具有使用ATP的腺苷酸转移酶活性,但本身不具有DNA连接酶的功能。此外,我们鉴定了类似于人多核苷酸激酶的5'-多核苷酸激酶,它可能为后续的连接准备了DNA末端。结论放射球菌含有标准的细菌DNA连接酶,使用NAD + 作为辅助因子。它的酶学性质与大肠杆菌DNA连接酶相似,除了它偏爱Mn(II)作为金属辅因子。推定的第二个DNA连接酶的功能尚不清楚,但其腺苷酸转移酶活性将其归类为核苷酸转移酶家族的成员。来自同一操纵子的另一种蛋白质的表征揭示了5'-多核苷酸激酶,其可能在DNA链断裂修复中起作用。

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