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1. Transcription-coupled DNA–protein crosslink repair by CSB and CRL4CSA-mediated degradation

2. Trichothiodystrophy‐associated MPLKIP maintains DBR1 levels for proper lariat debranching and ectodermal differentiation

5. Targeted Apoptosis of Senescent Cells Restores Tissue Homeostasis in Response to Chemotoxicity and Aging

6. The central role of DNA damage in the ageing process

11. Genome-wide RNA polymerase stalling shapes the transcriptome during aging

12. Trichothiodystrophy-associated MPLKIP maintains DBR1 levels for proper lariat debranching and ectodermal differentiation

13. DNA repair in cardiomyocytes is critical for maintaining cardiac function in mice

14. DNA repair in cardiomyocytes is critical for maintaining cardiac function in mice

19. Different responses to DNA damage determine ageing differences between organs

20. Different responses to DNA damage determine ageing differences between organs

22. Different responses to DNA damage determine ageing differences between organs

26. The central role of DNA damage in the ageing process

27. Organoids derived from neoadjuvant FOLFIRINOX patients recapitulate therapy resistance in pancreatic ductal adenocarcinoma

28. Frequent germline mutations and somatic repeat instability in DNA mismatch-repair-deficient Caenorhabditis elegans

29. Comprehensive microRNA profiling in B-cells of human centenarians by massively parallel sequencing

30. Deficiency of nucleotide excision repair is associated with mutational signature observed in cancer

32. Deficiency of nucleotide excision repair is associated with mutational signature observed in cancer

33. Deficiency of nucleotide excision repair is associated with mutational signature observed in cancer

34. Aberrant MicroRNA Expression and Its Implications for Uveal Melanoma Metastasis

35. Deficiency of nucleotide excision repair is associated with mutational signature observed in cancer

37. Deficiency of nucleotide excision repair explains mutational signature observed in cancer

38. Identification of genes that protect the C. elegans genome against mutations by genome-wide RNAi

39. Additional file 1: Table S1. of miR-634 restores drug sensitivity in resistant ovarian cancer cells by targeting the Ras-MAPK pathway

40. Abstract 1657: Mapping mechanisms of radiotherapy resistance in prostate cancer

45. Attenuated XPC Expression Is Not Associated with Impaired DNA Repair in Bladder Cancer

46. miR-634 restores drug sensitivity in resistant ovarian cancer cells by targeting the Ras-MAPK pathway

47. Deciphering the RNA landscape by RNAome sequencing

49. Attenuated XPC Expression Is Not Associated with Impaired DNA Repair in Bladder Cancer

50. Deciphering the RNA landscape by RNAome sequencing

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