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Repair of Single-Strand Deoxyribonucleic Acid Breaks in Ultraviolet Light-Irradiated Haemophilus influenzae

机译:紫外线光照射的流感嗜血杆菌单链脱氧核糖核酸断裂的修复

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摘要

The wild-type strain and mutants of Haemophilus influenzae, sensitive or resistant to ultraviolet light (UV) as defined by colony-forming ability, were examined for their ability to perform the incision and rejoining steps of the deoxyribonucleic acid (DNA) dark repair process. Although UV-induced pyrimidine dimers are excised by the wild-type Rd and a resistant mutant BC200, the expected single-strand DNA breaks could not be detected on alkaline sucrose gradients. Repair of the gap resulting from excision must be rapid when experimental conditions described by us are employed. Single-strand DNA breaks were not detected in a UV-irradiated sensitive mutant (BC100) incapable of excising pyrimidine dimers, indicating that this mutant may be defective in a dimer-recognizing endonuclease. No single-strand DNA breaks were detected in a lysogen BC100(HP1c1) irradiated with a UV dose large enough to induce phage development in 80% of the cells.
机译:检查了由集落形成能力定义的对流感病毒敏感或具有抗性的野生型流感嗜血杆菌菌株和突变体,它们具有执行脱氧核糖核酸(DNA)暗修复过程的切口和重新结合步骤的能力。 。尽管紫外线诱导的嘧啶二聚体被野生型Rd和抗性突变体BC200切除,但在碱性蔗糖梯度上无法检测到预期的单链DNA断裂。当采用我们描述的实验条件时,切除引起的间隙必须迅速修复。在不能切除嘧啶二聚体的紫外线辐射敏感突变体(BC100)中未检测到单链DNA断裂,表明该突变体可能在识别二聚体的核酸内切酶中存在缺陷。在溶菌原BC100(HP1c1)中未检测到单链DNA断裂,该溶菌剂的UV剂量足以诱导80%的细胞噬菌体发育。

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