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枯草芽孢杆菌孢子 DNA 对致死性电离辐射损伤的抗性主要依赖于孢子核心成分和 DNA 修复,而氧自由基解毒的影响较小。

Resistance of Bacillus subtilis spore DNA to lethal ionizing radiation damage relies primarily on spore core components and DNA repair, with minor effects of oxygen radical detoxification.

机构信息

German Aerospace Center (DLR e.V.), Institute of Aerospace Medicine, Radiation Biology Department, Cologne, Germany.

出版信息

Appl Environ Microbiol. 2014 Jan;80(1):104-9. doi: 10.1128/AEM.03136-13. Epub 2013 Oct 11.

Abstract

The roles of various core components, including α/β/γ-type small acid-soluble spore proteins (SASP), dipicolinic acid (DPA), core water content, and DNA repair by apurinic/apyrimidinic (AP) endonucleases or nonhomologous end joining (NHEJ), in Bacillus subtilis spore resistance to different types of ionizing radiation including X rays, protons, and high-energy charged iron ions have been studied. Spores deficient in DNA repair by NHEJ or AP endonucleases, the oxidative stress response, or protection by major α/β-type SASP, DPA, and decreased core water content were significantly more sensitive to ionizing radiation than wild-type spores, with highest sensitivity to high-energy-charged iron ions. DNA repair via NHEJ and AP endonucleases appears to be the most important mechanism for spore resistance to ionizing radiation, whereas oxygen radical detoxification via the MrgA-mediated oxidative stress response or KatX catalase activity plays only a very minor role. Synergistic radioprotective effects of α/β-type but not γ-type SASP were also identified, indicating that α/β-type SASP's binding to spore DNA is important in preventing DNA damage due to reactive oxygen species generated by ionizing radiation.

摘要

已经研究了各种核心成分(包括α/β/γ-型小酸溶性孢子蛋白(SASP)、二吡啶羧酸(DPA)、核心含水量以及嘌呤/嘧啶非依赖性核酸内切酶(AP)或非同源末端连接(NHEJ)修复对枯草芽孢杆菌孢子抵抗不同类型电离辐射的作用,包括 X 射线、质子和高能带电铁离子。与野生型孢子相比,缺乏 NHEJ 或 AP 核酸内切酶修复、氧化应激反应或主要α/β-型 SASP、DPA 和核心含水量降低保护的孢子对电离辐射更为敏感,对高能带电铁离子的敏感性最高。通过 NHEJ 和 AP 核酸内切酶的 DNA 修复似乎是孢子抵抗电离辐射的最重要机制,而通过 MrgA 介导的氧化应激反应或 KatX 过氧化氢酶活性进行的氧自由基解毒作用仅起很小的作用。还鉴定了α/β-型而不是γ-型 SASP 的协同辐射防护作用,表明α/β-型 SASP 与孢子 DNA 的结合对于防止由电离辐射产生的活性氧引起的 DNA 损伤很重要。

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