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Updated: Feb 5, 2026

Atomic Force Microscopy Investigations of DNA Lesion Recognition in Nucleotide Excision Repair
Published on: May 24, 2017
DGCR8 regulates multiple processes of transcription coupled nucleotide excision repair
Takaaki Watanabe1, Daiyu Yoshinami1,2, Hiroyuki Yamasaki1
1Department of Molecular Life Science, Tokai University School of Medicine, 143 Shimokasuya, Isehara, 259-1193, Kanagawa, Japan.
Abstract:
Ultraviolet (UV) radiation is a major environmental factor that induces DNA lesions. Cells have evolved repair pathways, in which the transcription-coupled nucleotide excision repair (TC-NER) has a central role in removing the lesions. Here we demonstrate that DGCR8, known as a crucial component in microRNA biogenesis, coordinates the UV-induced formation of the TC-NER complex by interacting with TC-NER factors. These interactions could depend on the phosphorylation of Serine 153 of DGCR8, potentially serving as a functional switch from miRNA biogenesis to the TC-NER process. Interestingly, DGCR8 is also involved in recruiting chromatin remodelers, SPT16 and SMARCA5, for the TC-NER initiation, regulating UV-induced DNA/RNA hybrids (R-loops), and modulating DNA replication through the ATR-CHK1 checkpoint pathway. These findings reveal a novel essential regulator of TC-NER independently of miRNA processing and provide new insights into the relevant biological processes and pathological mechanisms.
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