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The mRNA assembly line: transcription and processing machines in the same factory
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scholarly article
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Europe PubMed Central
PubMed ID
12067656
retrieved
3 August 2017
review article
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Europe PubMed Central
title
The mRNA assembly line: transcription and processing machines in the same factory
(English)
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stated in
Europe PubMed Central
PubMed ID
12067656
retrieved
3 August 2017
author name string
David Bentley
series ordinal
1
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Europe PubMed Central
PubMed ID
12067656
retrieved
3 August 2017
publication date
1 June 2002
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Europe PubMed Central
PubMed ID
12067656
retrieved
3 August 2017
published in
Current Opinion in Cell Biology
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Europe PubMed Central
PubMed ID
12067656
retrieved
3 August 2017
volume
14
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Europe PubMed Central
PubMed ID
12067656
retrieved
3 August 2017
page(s)
336-342
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Europe PubMed Central
PubMed ID
12067656
retrieved
3 August 2017
issue
3
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Europe PubMed Central
PubMed ID
12067656
retrieved
3 August 2017
cites work
Assembly and transport of a premessenger RNP particle
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Dynamic association of capping enzymes with transcribing RNA polymerase II
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Different phosphorylated forms of RNA polymerase II and associated mRNA processing factors during transcription
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Functional interaction of yeast pre-mRNA 3' end processing factors with RNA polymerase II.
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Specificity of RNA maturation pathways: RNAs transcribed by RNA polymerase III are not substrates for splicing or polyadenylation
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Messenger RNAs are recruited for nuclear export during transcription
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RNA editing by base deamination: more enzymes, more targets, new mysteries
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Precursor RNAs harboring nonsense codons accumulate near the site of transcription.
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Coupled transcription and translation within nuclei of mammalian cells.
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The BARD1-CstF-50 interaction links mRNA 3' end formation to DNA damage and tumor suppression
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Structural basis of transcription: RNA polymerase II at 2.8 angstrom resolution
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5'-Capping enzymes are targeted to pre-mRNA by binding to the phosphorylated carboxy-terminal domain of RNA polymerase II
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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The C-terminal domain of RNA polymerase II couples mRNA processing to transcription
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https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
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RNA polymerase II is an essential mRNA polyadenylation factor
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https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
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The C-terminal domain of the largest subunit of RNA polymerase II interacts with a novel set of serine/arginine-rich proteins
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A functional interaction between the carboxy-terminal domain of RNA polymerase II and pre-mRNA splicing
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7 January 2021
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Capping, splicing, and 3' processing are independently stimulated by RNA polymerase II: different functions for different segments of the CTD
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7 January 2021
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Pre-mRNA processing and the CTD of RNA polymerase II: the tail that wags the dog?
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7 January 2021
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Opposing effects of Ctk1 kinase and Fcp1 phosphatase at Ser 2 of the RNA polymerase II C-terminal domain
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
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Origins of mRNA identity: capping enzymes bind to the phosphorylated C-terminal domain of RNA polymerase II
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7 January 2021
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mRNA capping enzyme is recruited to the transcription complex by phosphorylation of the RNA polymerase II carboxy-terminal domain
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https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
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Mammalian capping enzyme complements mutant Saccharomyces cerevisiae lacking mRNA guanylyltransferase and selectively binds the elongating form of RNA polymerase II
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https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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Distinct roles for CTD Ser-2 and Ser-5 phosphorylation in the recruitment and allosteric activation of mammalian mRNA capping enzyme
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Transcription elongation factor hSPT5 stimulates mRNA capping
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HIV-1 Tat protein interacts with mammalian capping enzyme and stimulates capping of TAR RNA.
1 reference
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In situ transcription and splicing in the Balbiani ring 3 gene
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Uncoupling yeast intron recognition from transcription with recursive splicing
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7 January 2021
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Stimulatory effect of splicing factors on transcriptional elongation
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A human RNA polymerase II-containing complex associated with factors necessary for spliceosome assembly
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The splicing factor, Prp40, binds the phosphorylated carboxyl-terminal domain of RNA polymerase II.
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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Participation of the C-terminal domain of RNA polymerase II in exon definition during pre-mRNA splicing
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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based on heuristic
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Phosphorylated RNA polymerase II stimulates pre-mRNA splicing
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RNA polymerase II targets pre-mRNA splicing factors to transcription sites in vivo
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7 January 2021
based on heuristic
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A functional interaction between the survival motor neuron complex and RNA polymerase II
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
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Coupling of transcription with alternative splicing: RNA pol II promoters modulate SF2/ASF and 9G8 effects on an exonic splicing enhancer
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7 January 2021
based on heuristic
inferred from DOI database lookup
A human papillomavirus E2 transcriptional activator. The interactions with cellular splicing factors and potential function in pre-mRNA processing
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Direct coupling of transcription and mRNA processing through the thermogenic coactivator PGC-1
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
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The acute myeloid leukemia-associated protein, DEK, forms a splicing-dependent interaction with exon-product complexes
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
The transcription factor Spi-1/PU.1 interacts with the potential splicing factor TLS
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Fusion of splicing factor genes PSF and NonO (p54nrb) to the TFE3 gene in papillary renal cell carcinoma
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
EWS.Fli-1 fusion protein interacts with hyperphosphorylated RNA polymerase II and interferes with serine-arginine protein-mediated RNA splicing
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
TLS-ERG leukemia fusion protein inhibits RNA splicing mediated by serine-arginine proteins
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
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Coupled in vitro synthesis and splicing of RNA polymerase II transcripts
1 reference
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reference URL
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7 January 2021
based on heuristic
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Antagonistic effects of T-Ag and VP16 reveal a role for RNA pol II elongation on alternative splicing
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7 January 2021
based on heuristic
inferred from DOI database lookup
EM visualization of transcription by RNA polymerase II: downstream termination requires a poly(A) signal but not transcript cleavage.
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
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Mechanism of poly(A) signal transduction to RNA polymerase II in vitro
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https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
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Transcriptional termination and coupled polyadenylation in vitro
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Multiple transcript cleavage precedes polymerase release in termination by RNA polymerase II
1 reference
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Crossref
reference URL
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7 January 2021
based on heuristic
inferred from DOI database lookup
Coupling termination of transcription to messenger RNA maturation in yeast.
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
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Mutations in a peptidylprolyl-cis/trans-isomerase gene lead to a defect in 3'-end formation of a pre-mRNA in Saccharomyces cerevisiae
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Kin28, the TFIIH-associated carboxy-terminal domain kinase, facilitates the recruitment of mRNA processing machinery to RNA polymerase II.
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Cleavage/polyadenylation factor IA associates with the carboxyl-terminal domain of RNA polymerase II in Saccharomyces cerevisiae.
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Phospho-carboxyl-terminal domain binding and the role of a prolyl isomerase in pre-mRNA 3'-End formation
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
RNA-binding protein Nrd1 directs poly(A)-independent 3'-end formation of RNA polymerase II transcripts
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
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Evolutionarily conserved interaction between CstF-64 and PC4 links transcription, polyadenylation, and termination
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Human PC4 is a substrate-specific inhibitor of RNA polymerase II phosphorylation
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Transcriptional termination factors for RNA polymerase II in yeast
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
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Assembly of the Nuclear Transcription and Processing Machinery: Cajal Bodies (Coiled Bodies) and Transcriptosomes
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
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Transcription factor TFIID recruits factor CPSF for formation of 3' end of mRNA
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
UV-damaged DNA-binding protein in the TFTC complex links DNA damage recognition to nucleosome acetylation
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
WT1 interacts with the splicing factor U2AF65 in an isoform-dependent manner and can be incorporated into spliceosomes
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
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A new view of mRNA export: separating the wheat from the chaff
1 reference
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7 January 2021
based on heuristic
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The Ess1 prolyl isomerase is linked to chromatin remodeling complexes and the general transcription machinery
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
A novel transcriptional coactivator, p52, functionally interacts with the essential splicing factor ASF/SF2
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Human pre-mRNA cleavage factor II(m) contains homologs of yeast proteins and bridges two other cleavage factors
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Requirements of the RNA polymerase II C-terminal domain for reconstituting pre-mRNA 3' cleavage.
1 reference
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reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
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7 January 2021
based on heuristic
inferred from DOI database lookup
Integrating mRNA processing with transcription
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900333-2
retrieved
7 January 2021
based on heuristic
inferred from DOI database lookup
Identifiers
DOI
10.1016/S0955-0674(02)00333-2
1 reference
stated in
Europe PubMed Central
PubMed ID
12067656
retrieved
3 August 2017
PubMed ID
12067656
1 reference
stated in
Europe PubMed Central
PubMed ID
12067656
retrieved
3 August 2017
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