Transcription-dependent DNA double-strand breaks and human disease
Accumulation of DNA damage in resting cells is an emerging cause of human disease. We identified a mechanism of DNA double-strand break (DSB) formation in non-replicating cells, which strictly depends on transcription. These transcriptional DSBs arise from the twinned processing of R-loops and topoi...
Những tác giả chính: | Cristini, A, Gromak, N, Sordet, O |
---|---|
Định dạng: | Journal article |
Ngôn ngữ: | English |
Được phát hành: |
Taylor and Francis
2020
|
Những quyển sách tương tự
-
Transcription-dependent DNA double-strand breaks and human disease
Bằng: Agnese Cristini, et al.
Được phát hành: (2020-03-01) -
Dual processing of R-loops and topoisomerase I induces transcription-dependent DNA double-strand breaks
Bằng: Cristini, A, et al.
Được phát hành: (2019) -
Dual Processing of R-Loops and Topoisomerase I Induces Transcription-Dependent DNA Double-Strand Breaks
Bằng: Agnese Cristini, et al.
Được phát hành: (2019-09-01) -
Large XPF-dependent deletions following misrepair of a DNA double strand break are prevented by the RNA:DNA helicase Senataxin
Bằng: Brustel, J, et al.
Được phát hành: (2018) -
TDP1 mutation causing SCAN1 neurodegenerative syndrome hampers the repair of transcriptional DNA double-strand breaks
Bằng: Mathéa Geraud, et al.
Được phát hành: (2024-05-01)