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Search Results to David L Bentley

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One or more keywords matched the following items that are connected to Bentley, David

Item TypeName
Academic Article 5'-Capping enzymes are targeted to pre-mRNA by binding to the phosphorylated carboxy-terminal domain of RNA polymerase II.
Academic Article Dynamic association of capping enzymes with transcribing RNA polymerase II.
Academic Article The guanylyltransferase domain of mammalian mRNA capping enzyme binds to the phosphorylated carboxyl-terminal domain of RNA polymerase II.
Academic Article RNA polymerase II carboxy-terminal domain phosphorylation is required for cotranscriptional pre-mRNA splicing and 3'-end formation.
Academic Article Splicing speckles are not reservoirs of RNA polymerase II, but contain an inactive form, phosphorylated on serine2 residues of the C-terminal domain.
Academic Article DNA damage regulates alternative splicing through inhibition of RNA polymerase II elongation.
Academic Article TFIIH-associated Cdk7 kinase functions in phosphorylation of C-terminal domain Ser7 residues, promoter-proximal pausing, and termination by RNA polymerase II.
Academic Article Cyclin-dependent kinase control of the initiation-to-elongation switch of RNA polymerase II.
Academic Article Gene-specific RNA polymerase II phosphorylation and the CTD code.
Concept Phosphorylation
Grant Elongation and termination of transcripts by RNA pol II
Grant Coupling of transcription with pre-mRNA metabolism
Grant Coupling of transcription with nascent pre-mRNA metabolism
Academic Article RNA Pol II Dynamics Modulate Co-transcriptional Chromatin Modification, CTD Phosphorylation, and Transcriptional Direction.
Academic Article Human TFIIH Kinase CDK7 Regulates Transcription-Associated Chromatin Modifications.
Grant Trisomy 21 and RNA polymerase II function
Academic Article Control of RNA Pol II Speed by PNUTS-PP1 and Spt5 Dephosphorylation Facilitates Termination by a "Sitting Duck Torpedo" Mechanism.
Academic Article The pausing zone and control of RNA polymerase II elongation by Spt5: Implications for the pause-release model.

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  • Phosphorylation

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