Author:
van den Heuvel Diana,Rodríguez-Martínez Marta,van der Meer Paula J.,Moreno Nicolas Nieto,Park Jiyoung,Kim Hyun-Suk,van Schie Janne J.M.,Wondergem Annelotte P.,D’Souza Areetha,Yakoub George,Herlihy Anna E.,Kashyap Krushanka,Boissière Thierry,Walker Jane,Mitter Richard,Apelt Katja,de Lint Klaas,Kirdök Idil,Ljungman Mats,Wolthuis Rob M.F.,Cramer Patrick,Schärer Orlando D.,Kokic Goran,Svejstrup Jesper Q,Luijsterburg Martijn S.
Abstract
SummaryTranscription-coupled DNA repair (TCR) removes bulky DNA lesions impeding RNA polymerase II (RNAPII) transcription. Recent studies have outlined the stepwise assembly of TCR factors CSB, CSA, UVSSA, and TFIIH around lesion-stalled RNAPII. However, the mechanism and factors required for the transition to downstream repair steps, including RNAPII removal to provide repair proteins access to the DNA lesion, remain unclear. Here, we identify STK19 as a new TCR factor facilitating this transition. Loss of STK19 does not impact initial TCR complex assembly or RNAPII ubiquitylation but delays lesion-stalled RNAPII clearance, thereby interfering with the downstream repair reaction. Cryo-EM and mutational analysis reveal that STK19 associates with the TCR complex, positioning itself between RNAPII, UVSSA, and CSA. The structural insights and molecular modeling suggest that STK19 positions the ATPase subunits of TFIIH onto DNA in front of RNAPII. Together, these findings provide new insights into the factors and mechanisms required for TCR.
Publisher
Cold Spring Harbor Laboratory
Cited by
1 articles.
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