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Roles of DNA repair and membrane integrity in heat resistance of Deinococcus radiodurans

机译:DNA修复和膜完整性在放射性杜氏球菌耐热性中的作用

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To study the effects of heat shock on Deinococcus radiodurans and the role of DNA repair in high temperature resistance, different strains of D. radiodurans (wild type, recA, irrE, and pprA) were treated with temperatures ranging from 40 to 100 °C under wet and dry conditions. The mutant strains were more sensitive to wet heat of ≥60 °C and dry heat of ≥80 °C than the wild type. Both wild-type and DNA repair-deficient strains were much more resistant to high temperatures when exposed in the dried state as opposed to cells in suspension. Molecular staining techniques with the wild-type strain revealed that cells in the dried state were able to retain membrane integrity after drying and subsequent heat exposure, while heat-exposed cells in suspension showed significant loss of membrane integrity and respiration activity. The results suggest that the repair of DNA damage (e.g., DNA double-strand breaks by RecA and PprA) is essential after treatment with wet heat at temperatures >60 °C and dry heat >80 °C, and the ability of D. radiodurans to stabilize its plasma membrane during dehydration might represent one aspect in the protection of dried cells from heat-induced membrane damage.
机译:为了研究热休克对放射性杜氏球菌的影响以及DNA修复在高温抗性中的作用,在40-100°C的温度下,对不同菌株的放射性杜氏球菌(野生型,recA,irrE和pprA)进行了处理。潮湿和干燥的条件。与野生型相比,突变株对湿热≥60°C和干热≥80°C更敏感。当暴露于干燥状态时,野生型和DNA修复缺陷型菌株与悬浮液中的细胞相比,对高温的抵抗力要强得多。用野生型菌株进行的分子染色技术表明,干燥状态的细胞在干燥和随后的热暴露后能够保持膜的完整性,而悬浮状态下受热暴露的细胞显示出膜完整性和呼吸活性的显着降低。结果表明,在> 60°C的湿热和> 80°C的干热处理后,修复DNA损伤(例如RecA和PprA引起的DNA双链断裂)和D. radiodurans的能力至关重要。在脱水过程中稳定其质膜可能代表了保护干细胞免受热引起的膜损伤的一个方面。

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