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首页> 外文期刊>Journal of Virology >In Vitro Packaging of UV Radiation-Damaged DNA from Bacteriophage T7
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In Vitro Packaging of UV Radiation-Damaged DNA from Bacteriophage T7

机译:来自噬菌体T7的UV辐射受损DNA的体外包装

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When DNA from bacteriophage T7 is irradiated with UV light, the efficiency with which this DNA can be packaged in vitro to form viable phage particles is reduced. A comparison between irradiated DNA packaged in vitro and irradiated intact phage particles shows almost identical survival as a function of UV dose when Escherichia coli wild type or polA or uvrA mutants are used as the host. Although uvrA mutants perform less host cell reactivation, the polA strains are identical with wild type in their ability to support the growth of irradiated T7 phage or irradiated T7 DNA packaged in vitro into complete phage. An examination of in vitro repair performed by extracts of T7-infected E.coli suggests that T7 DNA polymerase may substitute for E. coli DNA polymerase I in the resynthesis step of excision repair. Also tested was the ability of a similar in vitro repair system that used extracts from uninfected cells to restore biological activity of irradiated DNA. When T7 DNA damaged by UV irradiation was treated with an endonuclease from Micrococcus luteus that is specific for pyrimidine dimers and then was incubated with an extract of uninfected E. coli capable of removing pyrimidine dimers and restoring the DNA of its original (whole genome size) molecular weight, this DNA showed a higher packaging efficiency than untreated DNA, thus demonstrating that the in vitro repair system partially restored the biological activity of UV-damaged DNA.
机译:当用UV光照射来自噬菌体T7的DNA时,可以在体外包装该DNA以形成活噬菌体颗粒的效率。在体外封装的辐照DNA之间的比较和照射的完整噬菌体颗粒的含量几乎相同的存活,作为UV剂量的功能,当大肠杆菌野生型或 POLA UVRA < / em>突变体用作宿主。虽然 UVra 突变体表现较少的宿主细胞再激活,但菌株的菌株与野生型相同,其能够支持辐照的T7噬菌体或辐照的T7 DNA封装在体外完整的噬菌体。对T7感染的提取物进行体外修复的检查,T7-感染的提取物表明T7 DNA聚合酶可以替代 E. COLI DNA聚合酶I在再合成步骤的切除修复中。还测试了类似的体外修复系统的能力,其使用来自未感染细胞的提取物来恢复辐照DNA的生物活性。当通过UV照射损坏的T7 DNA用来自嘧啶二聚体特异的内切核酸酶处理,然后与未感染的 E的提取物一起温育。 Coli 能够除去嘧啶二聚体并恢复其原始(全基因组大小)分子量的DNA,该DNA显示出比未处理的DNA更高的包装效率,从而证明了体外修复系统部分恢复了生物活性紫外线损坏的DNA。

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