首页> 外文期刊>Journal of bacteriology >Roles of the Major, Small, Acid-Soluble Spore Proteins and Spore-Specific and Universal DNA Repair Mechanisms in Resistance of Bacillus subtilis Spores to Ionizing Radiation from X Rays and High-Energy Charged-Particle Bombardment
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Roles of the Major, Small, Acid-Soluble Spore Proteins and Spore-Specific and Universal DNA Repair Mechanisms in Resistance of Bacillus subtilis Spores to Ionizing Radiation from X Rays and High-Energy Charged-Particle Bombardment

机译:主要,小,酸溶性孢子蛋白和特定的和通用的DNA修复机制在枯草芽孢杆菌孢子对X射线和高能带电粒子轰击电离辐射的抵抗中的作用

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The role of DNA repair by nonhomologous end joining (NHEJ), homologous recombination, spore photoproduct lyase, and DNA polymerase I and genome protection via α/β-type small, acid-soluble spore proteins (SASP) in Bacillus subtilis spore resistance to accelerated heavy ions (high-energy charged [HZE] particles) and X rays has been studied. Spores deficient in NHEJ and α/β-type SASP were significantly more sensitive to HZE particle bombardment and X-ray irradiation than were the recA, polA, and splB mutant and wild-type spores, indicating that NHEJ provides an efficient DNA double-strand break repair pathway during spore germination and that the loss of the α/β-type SASP leads to a significant radiosensitivity to ionizing radiation, suggesting the essential function of these spore proteins as protectants of spore DNA against ionizing radiation.
机译:枯草芽孢杆菌中非同源末端连接(NHEJ),同源重组,孢子光产物裂解酶和DNA聚合酶I的DNA修复作用以及通过α/β型小酸溶性孢子蛋白(SASP)进行的基因组保护/ em>研究了孢子对加速重离子(带高能量的[HZE]粒子)和X射线的抵抗力。与 recA,polA splB 突变体和野生型相比,缺乏NHEJ和α/β型SASP的孢子对HZE粒子轰击和X射线照射的敏感性更高。型孢子,表明NHEJ在孢子萌发过程中提供了有效的DNA双链断裂修复途径,并且α/β型SASP的丧失导致对电离辐射具有显着的放射敏感性,表明这些孢子蛋白的基本功能是孢子DNA的保护剂,可防止电离辐射。

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