Repair of ultraviolet-light-induced DNA damage in Vibrio cholerae

Goutam Das, Kaveri Sil, Jyotirmoy Das
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引用次数: 30

Abstract

Repair of ultraviolet-light-induced DNA damage in a highly pathogenic Gram-negative bacterium, Vibrio cholerae, has been examined. All three strains of V. cholerae belonging to two serotypes, Inaba and Ogawa, are very sensitive to ultraviolet irradiation, having inactivation cross-sections ranging from 0.18 to 0.24 m2/J. Although these cells are proficient in repairing the DNA damage by a photoreactivation mechanism, they do not possess efficient dark repair systems. The mild toxinogenic strain 154 of classical Vibrios presumably lacks any excision repair mechanism and studies of irradiated cell DNA indicate that the ultraviolet-induced pyrimidine dimers may not be excised. Ultraviolet-irradiated cells after saturation of dark repair can be further photoreactivated.

紫外线诱导的霍乱弧菌DNA损伤的修复
在一种高致病性革兰氏阴性菌,霍乱弧菌中,紫外线诱导的DNA损伤的修复已经被研究。稻叶和小川三株霍乱弧菌对紫外线照射非常敏感,其灭活截面范围为0.18 ~ 0.24 m2/J。尽管这些细胞能够通过光再激活机制修复DNA损伤,但它们并不具备有效的暗修复系统。经典弧菌的轻度毒性菌株154可能缺乏任何切除修复机制,辐照细胞DNA的研究表明,紫外线诱导的嘧啶二聚体可能不会被切除。紫外线照射后的细胞在黑暗修复饱和后可以进一步光再激活。
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