RNA polymerase inhibitor activity / nucleotide-excision repair complex / regulation of transcription-coupled nucleotide-excision repair / negative regulation of granulocyte differentiation / response to auditory stimulus / single strand break repair / negative regulation of beige fat cell differentiation / cellular response to camptothecin / cullin-RING-type E3 NEDD8 transferase / NEDD8 transferase activity ...RNA polymerase inhibitor activity / nucleotide-excision repair complex / regulation of transcription-coupled nucleotide-excision repair / negative regulation of granulocyte differentiation / response to auditory stimulus / single strand break repair / negative regulation of beige fat cell differentiation / cellular response to camptothecin / cullin-RING-type E3 NEDD8 transferase / NEDD8 transferase activity / cullin-RING ubiquitin ligase complex / Cul7-RING ubiquitin ligase complex / double-strand break repair via classical nonhomologous end joining / cellular response to chemical stress / Loss of Function of FBXW7 in Cancer and NOTCH1 Signaling / regulation of DNA damage checkpoint / positive regulation of protein autoubiquitination / regulation of nucleotide-excision repair / positive regulation by virus of viral protein levels in host cell / RNA polymerase II transcription initiation surveillance / protein neddylation / chromatin-protein adaptor activity / spindle assembly involved in female meiosis / NEDD8 ligase activity / epigenetic programming in the zygotic pronuclei / protein K27-linked ubiquitination / negative regulation of response to oxidative stress / VCB complex / UV-damage excision repair / Cul5-RING ubiquitin ligase complex / ubiquitin-ubiquitin ligase activity / ubiquitin-dependent protein catabolic process via the C-end degron rule pathway / SCF ubiquitin ligase complex / biological process involved in interaction with symbiont / Cul2-RING ubiquitin ligase complex / regulation of mitotic cell cycle phase transition / Cul3-RING ubiquitin ligase complex / negative regulation of type I interferon production / WD40-repeat domain binding / SCF-dependent proteasomal ubiquitin-dependent protein catabolic process / Cul4A-RING E3 ubiquitin ligase complex / Cul4-RING E3 ubiquitin ligase complex / Prolactin receptor signaling / negative regulation of mitophagy / Cul4B-RING E3 ubiquitin ligase complex / ubiquitin ligase complex scaffold activity / negative regulation of reproductive process / negative regulation of developmental process / TGF-beta receptor signaling activates SMADs / RNA polymerase II complex binding / ubiquitin conjugating enzyme activity / hemopoiesis / regulation of proteolysis / viral release from host cell / somatic stem cell population maintenance / regulation of postsynapse assembly / cullin family protein binding / anatomical structure morphogenesis / response to X-ray / protein monoubiquitination / ectopic germ cell programmed cell death / positive regulation of G1/S transition of mitotic cell cycle / positive regulation of viral genome replication / response to UV / protein autoubiquitination / ubiquitin-like ligase-substrate adaptor activity / site of DNA damage / signal transduction in response to DNA damage / Nuclear events stimulated by ALK signaling in cancer / protein K48-linked ubiquitination / transcription-coupled nucleotide-excision repair / negative regulation of insulin receptor signaling pathway / regulation of cellular response to insulin stimulus / proteasomal protein catabolic process / Maturation of protein E / positive regulation of TORC1 signaling / Maturation of protein E / ER Quality Control Compartment (ERQC) / Myoclonic epilepsy of Lafora / FLT3 signaling by CBL mutants / IRAK2 mediated activation of TAK1 complex / Prevention of phagosomal-lysosomal fusion / Alpha-protein kinase 1 signaling pathway / Glycogen synthesis / IRAK1 recruits IKK complex / IRAK1 recruits IKK complex upon TLR7/8 or 9 stimulation / Endosomal Sorting Complex Required For Transport (ESCRT) / Membrane binding and targetting of GAG proteins / post-translational protein modification / Negative regulation of FLT3 / Regulation of TBK1, IKKε (IKBKE)-mediated activation of IRF3, IRF7 / PTK6 Regulates RTKs and Their Effectors AKT1 and DOK1 / Regulation of TBK1, IKKε-mediated activation of IRF3, IRF7 upon TLR3 ligation / IRAK2 mediated activation of TAK1 complex upon TLR7/8 or 9 stimulation / Constitutive Signaling by NOTCH1 HD Domain Mutants / intrinsic apoptotic signaling pathway / NOTCH2 Activation and Transmission of Signal to the Nucleus / TICAM1,TRAF6-dependent induction of TAK1 complex / TICAM1-dependent activation of IRF3/IRF7 / positive regulation of gluconeogenesis 類似検索 - 分子機能
Advanced Investigator Grant CHROMATRANS (grant agreement No. 882357)
European Union
引用
ジャーナル: Nat Struct Mol Biol / 年: 2024 タイトル: Structural basis for RNA polymerase II ubiquitylation and inactivation in transcription-coupled repair. 著者: Goran Kokic / George Yakoub / Diana van den Heuvel / Annelotte P Wondergem / Paula J van der Meer / Yana van der Weegen / Aleksandar Chernev / Isaac Fianu / Thornton J Fokkens / Sonja Lorenz ...著者: Goran Kokic / George Yakoub / Diana van den Heuvel / Annelotte P Wondergem / Paula J van der Meer / Yana van der Weegen / Aleksandar Chernev / Isaac Fianu / Thornton J Fokkens / Sonja Lorenz / Henning Urlaub / Patrick Cramer / Martijn S Luijsterburg / 要旨: During transcription-coupled DNA repair (TCR), RNA polymerase II (Pol II) transitions from a transcriptionally active state to an arrested state that allows for removal of DNA lesions. This ...During transcription-coupled DNA repair (TCR), RNA polymerase II (Pol II) transitions from a transcriptionally active state to an arrested state that allows for removal of DNA lesions. This transition requires site-specific ubiquitylation of Pol II by the CRL4 ubiquitin ligase, a process that is facilitated by ELOF1 in an unknown way. Using cryogenic electron microscopy, biochemical assays and cell biology approaches, we found that ELOF1 serves as an adaptor to stably position UVSSA and CRL4 on arrested Pol II, leading to ligase neddylation and activation of Pol II ubiquitylation. In the presence of ELOF1, a transcription factor IIS (TFIIS)-like element in UVSSA gets ordered and extends through the Pol II pore, thus preventing reactivation of Pol II by TFIIS. Our results provide the structural basis for Pol II ubiquitylation and inactivation in TCR.