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Can an Inhibitor of DNA Polymerase β Enhance the Formation of Comet Tail?

机译:DNA聚合酶β抑制剂可以增强彗尾的形成吗?

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References(27) The comet assay can detect single-strand breaks (SSBs) as initial lesions and those that developed from alkali-labile sites under alkaline conditions (pH12.6). While the incision of UV-induced pyrimidine dimers creates a long gap of about 30 bp during nucleotide excision repair (NER) that is re-synthesized and repaired by DNA polymerase δ/ε, base excision repair (BER) creates a short gap of 1-6 bp that is closed by DNA polymerase β. Some chemicals are known to affect the formation of comet tails by the inhibition of enzymes taking part in DNA repair pathways. In this study, we investigated how 2′,3′-dideoxythymidine (ddT) which is a precursor of DNA polymerase β inhibitor, 2′,3′-dideoxythymidine 5′-triphosphate (ddTTP), affects comet-tail formation. The effects of three kinds of DNA re-synthesis inhibitors on the response of the comet assay were studied in TK+/− heterozygotes of TK6 human lymphoblastoid cells. Aphidicolin (APC) and the combination of cytosine-1-β-D-arabinofuranoside and hydroxyurea (araC/HU) enhanced comet-tail formation by UV, a UV-mimetic agent, 4-nitroquinoline-1-oxide (4NQO), and methylating agents, methyl methanesulfonate (MMS) and methyl nitrosourea (MNU). On the other hand, ddT enhanced comet-tail formation by MMS and MNU, but not UV and 4NQO. Since ddT did not affect comet-tail formation by MMS and MNU in TK−/− TK6 cells, ddTTP which is expected to be formed from ddT by thymidine kinase in TK+/− TK6 cells would inhibit the resealing of short gaps left by excision of damaged bases induced by MMS and MNU. Taking into consideration that 75% of BER was estimated to be due to DNA polymerase β in human cells, ddT can enhance a comet-positive response upon exposure to mutagens that produce damaged bases removed by BER, showing that BER depending on DNA polymerase β can be distinguished from NER by the enhancement of a comet-positive response by ddT.
机译:参考文献(27)彗星试验可以检测到单链断裂(SSB)作为初始损伤,以及那些在碱性条件下(pH> 12.6)从碱不稳定部位产生的损伤。虽然紫外线诱导的嘧啶二聚体的切口在核苷酸切除修复(NER)期间产生了约30 bp的长缺口,该缺口由DNA聚合酶δ/ε重新合成和修复,但碱基切除修复(BER)产生了1的短缺口DNA聚合酶β封闭的-6 bp。已知某些化学物质会通过抑制参与DNA修复途径的酶来影响彗尾的形成。在这项研究中,我们研究了DNA聚合酶β抑制剂2',3'-二脱氧胸苷5'-三磷酸(ddTTP)的前体2',3'-二脱氧胸苷(ddT)如何影响彗尾形成。在TK6人淋巴母细胞的TK +/-杂合子中研究了3种DNA重新合成抑制剂对彗星试验响应的影响。蚜虫蛋白(APC)和胞嘧啶1-β-D-阿拉伯呋喃糖苷和羟基脲(araC / HU)的组合可通过紫外线,紫外线模拟剂,4-硝基喹啉-1-氧化物(4NQO)和甲基化剂,甲磺酸甲酯(MMS)和亚硝基甲基脲(MNU)。另一方面,ddT增强了MMS和MNU的彗尾形成,但不增强UV和4NQO。由于ddT不会影响TK-/-TK6细胞中MMS和MNU的彗尾形成,因此预期TK +/- TK6细胞中由胸腺嘧啶核苷激酶由ddT形成的ddTTP会抑制因切除TPS而留下的短间隙的重新密封。 MMS和MNU诱导的受损碱基。考虑到估计BER的75%是由于人类细胞中的DNA聚合酶β引起的,ddT在暴露于产生被BER去除的受损碱基的诱变剂后可以增强彗星阳性反应,这表明依赖于DNA聚合酶β的BER可以ddT增强了彗星阳性反应,从而与NER相区别。

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