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嗜放射栖热菌中一种对核酸外切酶I敏感的DNA修复途径:辐射抗性的主要决定因素。

An exonuclease I-sensitive DNA repair pathway in Deinococcus radiodurans: a major determinant of radiation resistance.

作者信息

Misra Hari S, Khairnar Nivedita P, Kota Swathi, Shrivastava Smriti, Joshi Vasudha P, Apte Shree K

机构信息

Molecular Biology Division, Bhabha Atomic Research Centre, Mumbai- 400 085, India.

出版信息

Mol Microbiol. 2006 Feb;59(4):1308-16. doi: 10.1111/j.1365-2958.2005.05005.x.

DOI:10.1111/j.1365-2958.2005.05005.x
PMID:16430702
Abstract

Deinococcus radiodurans R1 recovering from acute dose of gamma radiation shows a biphasic mechanism of DNA double-strand break repair. The possible involvement of microsequence homology-dependent, or non-homologous end joining type mechanisms during initial period followed by RecA-dependent homologous recombination pathways has been suggested for the reconstruction of complete genomes in this microbe. We have exploited the known roles of exonuclease I in DNA recombination to elucidate the nature of recombination involved in DNA double-strand break repair during post-irradiation recovery of D. radiodurans. Transgenic Deinococcus cells expressing exonuclease I functions of Escherichia coli showed significant reduction in gamma radiation radioresistance, while the resistance to far-UV and hydrogen peroxide remained unaffected. The overexpression of E. coli exonuclease I in Deinococcus inhibited DNA double-strand break repair. Such cells exhibited normal post-irradiation expression kinetics of RecA, PprA and single-stranded DNA-binding proteins but lacked the divalent cation manganese [(Mn(II)]-dependent protection from gamma radiation. The results strongly suggest that 3' (rho) 5' single-stranded DNA ends constitute an important component in recombination pathway involved in DNA double-strand break repair and that absence of sbcB from deinococcal genome may significantly aid its extreme radioresistance phenotype.

摘要

从急性剂量的γ辐射中恢复的耐辐射球菌R1显示出DNA双链断裂修复的双相机制。有人提出,在初始阶段可能涉及微序列同源性依赖性或非同源末端连接型机制,随后是RecA依赖性同源重组途径,用于在这种微生物中重建完整基因组。我们利用核酸外切酶I在DNA重组中的已知作用,来阐明耐辐射球菌辐射后恢复过程中DNA双链断裂修复所涉及的重组性质。表达大肠杆菌核酸外切酶I功能的转基因耐辐射球菌细胞对γ辐射的抗性显著降低,而对远紫外线和过氧化氢的抗性不受影响。大肠杆菌核酸外切酶I在耐辐射球菌中的过表达抑制了DNA双链断裂修复。这类细胞在辐射后表现出正常的RecA、PprA和单链DNA结合蛋白的表达动力学,但缺乏二价阳离子锰[Mn(II)]对γ辐射的依赖性保护。结果强烈表明,3'(ρ)5'单链DNA末端是DNA双链断裂修复所涉及的重组途径中的一个重要组成部分,并且耐辐射球菌基因组中不存在sbcB可能显著有助于其极端抗辐射表型形成。

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