4.3 Article

RECQL5 KIX domain splicing isoforms have distinct functions in transcription repression and DNA damage response

Journal

DNA REPAIR
Volume 97, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.dnarep.2020.103007

Keywords

RECQL5; Transcription regulation; DNA damage response; Splicing isoform; RNA polymerase II; MRE11

Funding

  1. Research Grants Council of the Hong Kong SAR [16104917, 26100214, C6009-15G, C7007-17GF]

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RecQL5 has two alternative splicing isoforms, with RECQL5 beta mainly functioning as a transcription repressor, while the newly discovered RECQL5 beta 1 has a specialized role in DNA damage response.
RecQL5, a mammalian RecQ family protein, is involved in the regulation of transcription elongation, DNA damage response, and DNA replication. Here, we identified and characterized an alternative splicing isoform of RECQL5 (RECQL5 beta 1), which contains 17 additional amino acid residues within the RECQL5 KIX domain when compared with the canonical isoform (RECQL5 beta). RECQL5 beta 1 had a markedly decreased binding affinity to RNA polymerase II (Pol II) and poorly competed with the transcription elongation factor TFIIS for binding to Pol II. As a result, this isoform has a weaker activity for repression of transcription elongation. In contrast, we discovered that RECQL5 beta 1 could bind stronger to MRE11, which is a primary sensor of DNA double-strand breaks (DSBs). Furthermore, we found that RECQL5 beta 1 promoted DNA repair in the RECQL5 beta 1 rescue cells. These results suggest that RECQL5 beta mainly functions as a transcription repressor, while the newly discovered RECQL5 beta 1 has a specialized role in DNA damage response. Taken together, our data suggest a cellular-functional specialization for each KIX splicing isoform in the cell.

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