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首页> 外文期刊>Nucleic acids research >Repair protein persistence at DNA lesions characterizes XPF defect with Cockayne syndrome features
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Repair protein persistence at DNA lesions characterizes XPF defect with Cockayne syndrome features

机译:DNA损伤处的修复蛋白持久性表现出具有Cockayne综合征特征的XPF缺陷

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The structure-specific ERCC1-XPF endonuclease plays a key role in DNA damage excision by nucleotide excision repair (NER) and interstrand crosslink repair. Mutations in this complex can either cause xeroderma pigmentosum (XP) or XP combined with Cockayne syndrome (XPCS-complex) or Fanconi anemia. However, most patients carry compound heterozygous mutations, which confounds the dissection of the phenotypic consequences for each of the identified XPF alleles. Here, we analyzed the functional impact of individual pathogenic XPF alleles on NER. We show that XP-causing mutations diminish XPF recruitment to DNA damage and only mildly affect global genome NER. In contrast, an XPCS-complex-specific mutation causes persistent recruitment of XPF and the upstream core NER machinery to DNA damage and severely impairs both global genome and transcription-coupled NER. Remarkably, persistence of NER factors at DNA damage appears to be a common feature of XPCS-complex cells, suggesting that this could be a determining factor contributing to the development of additional developmental and/or neurodegenerative features in XP patients.
机译:特定结构的ERCC1-XPF核酸内切酶在通过核苷酸切除修复(NER)和链间交联修复的DNA损伤切除中起关键作用。该复合物中的突变可导致色素干皮症(XP)或XP与库卡因综合症(XPCS复合物)或范可尼贫血结合。然而,大多数患者携带复合杂合突变,这混淆了每个已鉴定XPF等位基因的表型后果的解剖。在这里,我们分析了单个病原性XPF等位基因对NER的功能影响。我们表明,导致XP的突变减少XPF对DNA损伤的募集,并且仅轻微影响全局基因组NER。相比之下,XPCS复合物特异性突变导致XPF和上游核心NER机制持续招募至DNA损伤,并严重损害了全局基因组和转录偶联的NER。值得注意的是,DNA损伤时NER因子的持久性似乎是XPCS复杂细胞的共同特征,表明这可能是导致XP患者出现其他发育和/或神经退行性特征的决定因素。

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