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首页> 外文期刊>Nucleic Acids Research >Repair of clustered uracil DNA damages in Escherichia coli
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Repair of clustered uracil DNA damages in Escherichia coli

机译:修复大肠杆菌中簇状尿嘧啶DNA损伤

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摘要

Multiply damaged sites (MDS) are defined as greater then/equal to two lesions within 10-15 bp and are generated in DNA by ionizing radiation. In vitro repair of closely opposed base damages ≥2 bp apart results in a double strand break (DSB). This work extends the in vitro studies by utilizing clusters of uracil DNA damage as model lesions to determine whether MDS are converted to DSBs in bacteria. Lesions were positioned within the firefly luciferase coding region, transformed into bacteria (wild-type, uracil DNA glycosylase-deficient, ung-, or exonuclease III and endonuclease IV-deficient, xth-nfo-) and luciferase activity measured following repair. DSB formation was expected to decrease activity. Two closely opposed uracils separated by ≤7 bp decreased luciferase activity in wild-type and xth-nfo-, but not ung- bacteria. Growth of bacteria to obtain plasmid-containing colonies demonstrated that the plasmid was destroyed following the mis-repair of two uracils positioned 7 bp apart. This study indicates a DSB is formed when uracil DNA glycosylase initiates repair of two closely opposed uracils ≤7 bp apart, even in the absence of the major apurinic endonucleases. This work supports the in vitro studies and demonstrates that DNA repair is not always advantageous to cells.
机译:多重损伤位点(MDS)的定义是大于/等于10-15 bp之内的两个损伤,并通过电离辐射在DNA中产生。相距≥2 bp的紧密相反碱基的损伤的体外修复会导致双链断裂(DSB)。这项工作通过利用尿嘧啶DNA损伤簇作为模型损伤来扩展体外研究,以确定细菌中MDS是否转化为DSB。将病变定位在萤火虫萤光素酶编码区域内,转化为细菌(野生型,尿嘧啶DNA糖基化酶缺陷型,ung或核酸外切酶III和核酸内切酶IV缺陷型,xth-nfo-),并在修复后测量萤光素酶活性。预期DSB的形成会降低活性。在野生型和xth-nfo-型中,两个相距≤7 bp紧密相对的尿嘧啶降低了萤光素酶的活性,但在非细菌中却没有。细菌的生长以获得含有质粒的菌落表明,在两个相距7 bp的尿嘧啶错修复后,质粒被破坏。这项研究表明,即使不存在主要的嘌呤核酸内切酶,尿嘧啶DNA糖基化酶开始修复两个相距≤7 bp的紧密相对的尿嘧啶时,也会形成DSB。这项工作支持体外研究,并证明DNA修复并不总是对细胞有利。

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