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首页> 外文期刊>Frontiers in Cell and Developmental Biology >The Interaction Efficiency of XPD-p44 With Bulky DNA Damages Depends on the Structure of the Damage
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The Interaction Efficiency of XPD-p44 With Bulky DNA Damages Depends on the Structure of the Damage

机译:具有庞大DNA损伤的XPD-P44的相互作用效率取决于损坏的结构

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The successful elimination of bulky DNA damages via the Nucleotide Excision Repair (NER) system is largely determined by the damage recognition step. This step consists of primary recognition and verification of the damage. The TFIIH helicase XPD plays a key role in the verification step during NER. To date, the mechanism of damage verification is not sufficiently understood and requires further detailed research. This study is a systematic investigation of the interaction of ctXPD (Chaetomium thermophilum) as well as ctXPD-ctp44 with model DNAs, which contain structurally different bulky lesions with previously estimated NER repair efficiencies. We have used ATPase and DNA binding studies to assess the interaction of ctXPD with damaged DNA. The result of the analysis of ctXPD-ctp44 binding to DNA containing fluorescent and photoactivatable lesions demonstrates the relationship between the affinity of XPD for DNAs containing bulky damages and the ability of the NER system to eliminate the damage. Photo-cross-linking of ctXPD with DNA probes containing repairable and unrepairable photoactivatable damages reveals differences in the DNA interaction efficiency in the presence and absence of ctp44. In general, the results obtained indicate the ability of ctXPD-ctp44 to interact with a damage and suggest a significant role for ctp44 subunit in the verification process.
机译:通过核苷酸切除修复(NER)系统的成功消除庞大的DNA损坏主要由损坏识别步骤决定。此步骤包括初始识别和验证损坏。 TFIIH Helicase XPD在NER期间在验证步骤中发挥着关键作用。迄今为止,损害验证机制不充分理解,需要进一步详细的研究。该研究是对CTXPD(Chaetomium Hirthophilum)的相互作用以及模型DNA的CTXPD-CTP44的系统调查,该模型DNA具有具有先前估计的NER修复效率的结构不同的笨重病变。我们使用ATPase和DNA结合研究来评估CTXPD与受损DNA的相互作用。 CTXPD-CTP44与含荧光和光活性病变的DNA的结合的结果表明了XPD对含有庞大损伤的DNA的亲和力与NER系统消除损伤的能力之间的关系。 CTXPD与含有可修复和未售接的光激活损伤的DNA探针的光交联显示DNA相互作用效率的差异在存在和不存在CTP44中。通常,获得的结果表明CTXPD-CTP44与损害相互作用的能力,并表明验证过程中CTP44亚基的重要作用。

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