Biometrology Group, Division of Chemical and Biological Metrology, Korea Research Institute of Standards and Science, Daejeon 305-340, Republic of Korea.
Department of Bio-Analytical Science, University of Science & Technology, Daejeon 305-340, Republic of Korea.
Nucleic Acids Res. 2022 Apr 22;50(7):3974-3984. doi: 10.1093/nar/gkac214.
The nucleotide excision repair (NER) machinery removes UV photoproducts from DNA in the form of small, excised damage-containing DNA oligonucleotides (sedDNAs) ∼30 nt in length. How cells process and degrade these byproducts of DNA repair is not known. Using a small scale RNA interference screen in UV-irradiated human cells, we identified TREX1 as a major regulator of sedDNA abundance. Knockdown of TREX1 increased the level of sedDNAs containing the two major UV photoproducts and their association with the NER proteins TFIIH and RPA. Overexpression of wild-type but not nuclease-inactive TREX1 significantly diminished sedDNA levels, and studies with purified recombinant TREX1 showed that the enzyme efficiently degrades DNA located 3' of the UV photoproduct in the sedDNA. Knockdown or overexpression of TREX1 did not impact the overall rate of UV photoproduct removal from genomic DNA or cell survival, which indicates that TREX1 function in sedDNA degradation does not impact NER efficiency. Taken together, these results indicate a previously unknown role for TREX1 in promoting the degradation of the sedDNA products of the repair reaction. Because TREX1 mutations and inefficient DNA degradation impact inflammatory and immune signaling pathways, the regulation of sedDNA degradation by TREX1 may contribute to photosensitive skin disorders.
核苷酸切除修复 (NER) 机制以含有约 30 个核苷酸的小型、切除的含损伤 DNA 寡核苷酸 (sedDNA) 的形式从 DNA 中去除 UV 光产物。细胞如何处理和降解这些 DNA 修复的副产物尚不清楚。在经过紫外线照射的人类细胞中进行小规模的 RNA 干扰筛选,我们发现 TREX1 是 sedDNA 丰度的主要调节剂。TREX1 的敲低增加了含有两种主要 UV 光产物的 sedDNA 的水平及其与 NER 蛋白 TFIIH 和 RPA 的结合。野生型而非无核酸酶活性的 TREX1 的过表达显著降低了 sedDNA 水平,并且用纯化的重组 TREX1 进行的研究表明,该酶可有效降解 sedDNA 中 UV 光产物 3' 处的 DNA。TREX1 的敲低或过表达不会影响基因组 DNA 中 UV 光产物的整体去除率或细胞存活,这表明 TREX1 在 sedDNA 降解中的功能不影响 NER 效率。总之,这些结果表明 TREX1 在促进修复反应的 sedDNA 产物降解中具有先前未知的作用。由于 TREX1 突变和低效的 DNA 降解会影响炎症和免疫信号通路,因此 TREX1 对 sedDNA 降解的调节可能有助于光敏性皮肤疾病。