Pages that link to "Q34232109"
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The following pages link to A dual interface determines the recognition of RNA polymerase II by RNA capping enzyme. (Q34232109):
Displaying 21 items.
- The Spt4-Spt5 complex: a multi-faceted regulator of transcription elongation (Q26863584) (← links)
- Architecture of the RNA polymerase-Spt4/5 complex and basis of universal transcription processivity (Q27667221) (← links)
- The conserved foot domain of RNA pol II associates with proteins involved in transcriptional initiation and/or early elongation. (Q27933397) (← links)
- The RNA polymerase II CTD coordinates transcription and RNA processing. (Q34303212) (← links)
- RNA polymerase II transcription elongation control (Q34960186) (← links)
- High-throughput genetic and gene expression analysis of the RNAPII-CTD reveals unexpected connections to SRB10/CDK8. (Q34979418) (← links)
- Coupling mRNA processing with transcription in time and space. (Q35006630) (← links)
- Amino Acid Substitutions in the Caenorhabditis elegans RNA Polymerase II Large Subunit AMA-1/RPB-1 that Result in α-Amanitin Resistance and/or Reduced Function (Q35746820) (← links)
- Regulation of mammalian transcription by Gdown1 through a novel steric crosstalk revealed by cryo-EM (Q36208841) (← links)
- Putting an 'End' to HIV mRNAs: capping and polyadenylation as potential therapeutic targets (Q38170575) (← links)
- Cross-talk of phosphorylation and prolyl isomerization of the C-terminal domain of RNA Polymerase II. (Q38182821) (← links)
- RNA polymerase II conserved protein domains as platforms for protein-protein interactions (Q38438209) (← links)
- A novel SH2 recognition mechanism recruits Spt6 to the doubly phosphorylated RNA polymerase II linker at sites of transcription. (Q38615900) (← links)
- Quick or quality? How mRNA escapes nuclear quality control during stress (Q38679087) (← links)
- The RNAs of RNA-directed DNA methylation (Q38927084) (← links)
- The C-terminal domain of Rpb1 functions on other RNA polymerase II subunits (Q42044526) (← links)
- Correct assembly of RNA polymerase II depends on the foot domain and is required for multiple steps of transcription in Saccharomyces cerevisiae (Q42572065) (← links)
- The evolutionarily conserved Pol II flap loop contributes to proper transcription termination on short yeast genes (Q43048815) (← links)
- CTD-dependent and -independent mechanisms govern co-transcriptional capping of Pol II transcripts (Q58714636) (← links)
- The capping enzyme facilitates promoter escape and assembly of a follow-on preinitiation complex for reinitiation (Q90573532) (← links)
- Interplay of mRNA capping and transcription machineries (Q92435462) (← links)