首页> 美国卫生研究院文献>Journal of Bacteriology >Rolling-circle replication of UV-irradiated duplex DNA in the phi X174 replicative-form----single-strand replication system in vitro.
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Rolling-circle replication of UV-irradiated duplex DNA in the phi X174 replicative-form----single-strand replication system in vitro.

机译:紫外线辐射的双链DNA在phi X174复制形式----单链复制系统中的滚转复制体外。

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摘要

Cloning of the phi X174 viral origin of replication into phage M13mp8 produced an M13-phi X174 chimera, the DNA of which directed efficient replicative-form----single-strand rolling-circle replication in vitro. This replication assay was performed with purified phi X174-encoded gene A protein, Escherichia coli rep helicase, single-stranded DNA-binding protein, and DNA polymerase III holoenzyme. The nicking of replicative-form I (RFI) DNA by gene A protein was essentially unaffected by the presence of UV lesions in the DNA. However, unwinding of UV-irradiated DNA by the rep helicase was inhibited twofold as compared with unwinding of the unirradiated substrate. UV irradiation of the substrate DNA caused a strong inhibition in its ability to direct DNA synthesis. However, even DNA preparations that contained as many as 10 photodimers per molecule still supported the synthesis of progeny full-length single-stranded DNA. The appearance of full-length radiolabeled products implied at least two full rounds of replication, since the first round released the unlabeled plus viral strand of the duplex DNA. Pretreatment of the UV-irradiated DNA substrate with purified pyrimidine dimer endonuclease from Micrococcus luteus, which converted photodimer-containing supercoiled RFI DNA into relaxed, nicked RFII DNA and thus prevented its replication, reduced DNA synthesis by 70%. Analysis of radiolabeled replication products by agarose gel electrophoresis followed by autoradiography revealed that this decrease was due to a reduction in the synthesis of progeny full-length single-stranded DNA. This implies that 70 to 80% of the full-length DNA products produced in this system were synthesized on molecules that carried photodimers. Thus, similarly to its activity on UV-irradiated single-stranded DNA, DNA polymerase III holenzyme can bypass pyrimidine photodimers in the more complex replicative form --->single-strand replication, which involves, in addition to the polymerizing activity, the unwinding of the duplex by the rep helicase and the participation of a more complex multiprotein replisome.
机译:将phi X174病毒复制起点克隆到噬菌体M13mp8中,产生了M13-phi X174嵌合体,其DNA定向有效的复制形式-单链滚环在体外复制。使用纯化的phi X174编码的基因A蛋白,大肠杆菌rep解旋酶,单链DNA结合蛋白和DNA聚合酶III全酶进行复制试验。基因A蛋白对复制型I(RFI)DNA的刻痕基本上不受DNA中UV损伤的影响。然而,与未辐照底物的展开相比,rep解旋酶对紫外线辐照的DNA的展开被抑制了两倍。底物DNA的紫外线照射导致直接DNA合成能力受到强烈抑制。但是,即使每个分子包含多达10个光电二聚体的DNA制剂仍支持后代全长单链DNA的合成。全长放射性标记产物的出现意味着至少要进行两轮完整复制,因为第一轮释放了双链DNA的未标记加病毒链。用来自Micrococcus luteus的纯化嘧啶二聚体核酸内切酶对紫外线照射的DNA底物进行预处理,该酶将含光二聚体的超螺旋RFI DNA转化为松弛的,刻痕的RFII DNA,从而阻止了其复制,使DNA合成减少了70%。通过琼脂糖凝胶电泳分析放射标记的复制产物,然后进行放射自显影,结果表明这种下降是由于子代全长单链DNA合成的减少。这意味着在该系统中产生的70%至80%的全长DNA产物是在带有光二聚体的分子上合成的。因此,类似于其对紫外线辐射的单链DNA的活性,DNA聚合酶III孔酶可以绕过更复杂的复制形式的嘧啶光二聚体--->单链复制,除聚合活性外,还涉及解链rep解旋酶对双链体的作用和更复杂的多蛋白复制体的参与。

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