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首页> 外文期刊>The Biochemical Journal >Effect of 8-oxoguanine and abasic site DNA lesions on in vitro elongation by human DNA polymerase in the presence of replication protein A and proliferating-cell nuclear antigen.
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Effect of 8-oxoguanine and abasic site DNA lesions on in vitro elongation by human DNA polymerase in the presence of replication protein A and proliferating-cell nuclear antigen.

机译:在复制蛋白A和增殖细胞核抗原存在的情况下,8-氧代鸟嘌呤和无碱基位点DNA损伤对人DNA聚合酶体外延伸的影响。

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摘要

DNA pol (polymerase) is thought to be the leading strand replicase in eukaryotes. In the present paper, we show that human DNA pol can efficiently bypass an 8-oxo-G (7,8-dihydro-8-oxoguanine) lesion on the template strand by inserting either dCMP or dAMP opposite to it, but it cannot bypass an abasic site. During replication, DNA pols associate with accessory proteins that may alter their bypass ability. We investigated the role of the human DNA sliding clamp PCNA (proliferating-cell nuclear antigen) and of the human single-stranded DNA-binding protein RPA (replication protein A) in the modulation of the DNA synthesis and translesion capacity of DNA pol . RPA inhibited the elongation by human DNA pol on templates annealed to short primers. PCNA did not influence the elongation by DNA pol and had no effect on inhibition of elongation caused by RPA. RPA inhibition was considerably reduced when the length of the primers was increased. On templates bearing the 8-oxo-G lesion, this inhibitory effect was more pronounced on DNA replication beyond the lesion, suggesting that RPA may prevent extension by DNA pol after incorporation opposite an 8-oxo-G. Neither PCNA nor RPA had any effect on the inability of DNA pol to replicate past the AP site, independent of the primer length.
机译:DNA pol(聚合酶)被认为是真核生物中的前导链复制酶。在本文中,我们显示了人类DNA pol可以通过在模板链对面插入dCMP或dAMP来有效地绕过模板链上的8-oxo-G(7,8-dihydro-8-oxoguanine)病变,但不能绕过一个无基础的网站。复制过程中,DNA pols与辅助蛋白结合,可能会改变其旁路能力。我们研究了人类DNA滑动钳位PCNA(增殖细胞核抗原)和人类单链DNA结合蛋白RPA(复制蛋白A)在调节DNA合成和DNA pol的转移能力中的作用。 RPA抑制了人类DNA pol在退火至短引物的模板上的延伸。 PCNA不会影响DNA pol的延伸率,也不会抑制RPA引起的延伸率。当增加引物的长度时,RPA抑制作用显着降低。在带有8-oxo-G损伤的模板上,这种抑制作用对病灶外的DNA复制更为显着,表明RPA可能在与8-oxo-G结合后阻止DNA pol的延伸。 PCNA和RPA都不会对DNA pol无法复制通过AP位点产生任何影响,而与引物长度无关。

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