DNA-directed termination of RNA Polymerase II transcription
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Immunoglobulin enhancers increase RNA polymerase 2 stalling at somatic hypermutation target sequences [GRO-seq]
Somatic hypermutation (SHM) drives the genetic diversity of immunoglobulin genes in activated B cells and supports the generation of antibodies with increased affinity for antigen. SHM is targeted to
NIAID Data Ecosystem50
The Exosome Component Rrp6 Is Required for RNA Polymerase II Termination at Specific Targets of the Nrd1-Nab3 Pathway
The exosome and its nuclear specific subunit Rrp6 form a 3’-5’ exonuclease complex that regulates diverse aspects of RNA biology including 3’ end processing and degradation of a variety of noncoding R
Figshare2016-01-15 更新20
Widespread termination of mammalian RNA polymerase II at T-rich DNA sequences (RNA-Seq)
The best-studied mechanism of eukaryotic RNA polymerase II (RNAPII) transcriptional termination is at protein-coding genes and involves endonucleolytic cleavage of the nascent RNA at the polyadenylati
NIAID Data Ecosystem10
High-resolution mapping of transcribing Pol III by CRAC in the WT and C128 mutants
Here we report high-resolution analyses of transcribing RNA polymerase III (Pol III) in a wild-type (WT) strain and three C128 mutants. C128 is the second largest subunit of Pol III, which is the key
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Integrator endonuclease drives promoter-proximal termination at all RNAPII transcribed loci (PRO-Seq). Integrator endonuclease drives promoter-proximal termination at all RNAPII transcribed loci (PRO-Seq)
Pausing of RNA polymerase II (RNAPII) in early elongation is critical for gene regulation. Paused RNAPII can be released into productive elongation by the kinase P-TEFb or targeted for premature termi
NIAID Data Ecosystem10



