Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polymerase II, causing transcription inhibition and transcription-replication conflicts. Cells are equipped with intricate mechanisms to counteract the severe consequence of these transcription-blocking lesions. However, the exact mechanism and factors involved remain largely unknown. Here, using a genome-wide CRISPR-Cas9 screen, we identified the elongation factor ELOF1 as an important factor in the transcription stress response following DNA damage. We show that ELOF1 has an evolutionarily conserved role in transcription-coupled nucleotide excision repair (TC-NER), where it promotes recruitment of the TC-NER factors UVSSA and TFIIH to efficientl...
Transcription-coupled nucleotide excision repair (TC-NER) removes bulky DNA lesions from the templat...
Recent work established DNA replication stress as a crucial driver of genomic instability and a key ...
Although correlations between RNA polymerase II (RNAPII) transcription stress, R-loops, and genome i...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
The cellular response to transcription-blocking DNA lesions involves the stalling of elongating RNA ...
RNA polymerases frequently deal with a number of obstacles during transcription elongation that need...
Cells employ transcription-coupled repair (TCR) to eliminate transcription-blocking DNA lesions. DNA...
Unperturbed transcription of eukaryotic genes by RNA polymerase II (Pol II) is crucial for proper ce...
Transcription-coupled nucleotide excision repair (TC-NER) removes bulky DNA lesions from the templat...
Recent work established DNA replication stress as a crucial driver of genomic instability and a key ...
Although correlations between RNA polymerase II (RNAPII) transcription stress, R-loops, and genome i...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
Correct transcription is crucial for life. However, DNA damage severely impedes elongating RNA polym...
The cellular response to transcription-blocking DNA lesions involves the stalling of elongating RNA ...
RNA polymerases frequently deal with a number of obstacles during transcription elongation that need...
Cells employ transcription-coupled repair (TCR) to eliminate transcription-blocking DNA lesions. DNA...
Unperturbed transcription of eukaryotic genes by RNA polymerase II (Pol II) is crucial for proper ce...
Transcription-coupled nucleotide excision repair (TC-NER) removes bulky DNA lesions from the templat...
Recent work established DNA replication stress as a crucial driver of genomic instability and a key ...
Although correlations between RNA polymerase II (RNAPII) transcription stress, R-loops, and genome i...