Found: 26
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Feed backwards model for microRNA processing and splicing in plants.
- Published in:
- EMBO Reports, 2013, v. 14, n. 7, p. 581, doi. 10.1038/embor.2013.77
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- Article
Role of the RNA/DNA kinase Grc3 in transcription termination by RNA polymerase I.
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- EMBO Reports, 2010, v. 11, n. 10, p. 758, doi. 10.1038/embor.2010.130
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- Article
Silencing in trans: position matters in fission yeast.
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- EMBO Reports, 2010, v. 11, n. 3, p. 145, doi. 10.1038/embor.2010.24
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- Article
Transcriptional termination and coupled polyadenylation in vitro.
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- EMBO Journal, 2000, v. 19, n. 14, p. 3770, doi. 10.1093/emboj/19.14.3770
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- Article
The gene for \[thetas]-globin is transcribed in human fetal erythroid tissues.
- Published in:
- Nature, 1987, v. 329, n. 6139, p. 551, doi. 10.1038/329551a0
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- Article
Transcription of the human U2 snRNA genes continues beyond the 3' box in vivo.
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- EMBO Journal, 1999, v. 18, n. 10, p. 2867, doi. 10.1093/emboj/18.10.2867
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- Article
Poly(A) signals control both transcriptional termination and initiation between the tandem GAL10 and GAL7 genes of Saccharomyces cerevisiae.
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- EMBO Journal, 1998, v. 17, n. 16, p. 4771, doi. 10.1093/emboj/17.16.4771
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- Article
Nascent transcription from the nmt1 and nmt2 genes of Schizosaccharomyces pombe overlaps neighbouring genes.
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- EMBO Journal, 1998, v. 17, n. 11, p. 3066, doi. 10.1093/emboj/17.11.3066
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- Article
The HIV-1 5' LTR poly(A) site is inactivated by U1 snRNP interaction with the downstream major splice donor site.
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- EMBO Journal, 1997, v. 16, n. 18, p. 5752, doi. 10.1093/emboj/16.18.5752
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- Article
Transcriptional termination signals for RNA polymerase II in fission yeast.
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- EMBO Journal, 1997, v. 16, n. 12, p. 3633, doi. 10.1093/emboj/16.12.3633
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- Article
Dawdling polymerases allow introns time to splice.
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- Nature Structural Biology, 2003, v. 10, n. 11, p. 876, doi. 10.1038/nsb1103-876
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- Article
U1 snRNA associates with TFIIH and regulates transcriptional initiation.
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- Nature Structural Biology, 2002, v. 9, n. 11, p. 800
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- Publication type:
- Article
Dual RNA 3'-end processing of H2A.X messenger RNA maintains DNA damage repair throughout the cell cycle.
- Published in:
- Nature Communications, 2021, v. 12, n. 1, p. 1, doi. 10.1038/s41467-020-20520-6
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- Article
Gene loops juxtapose promoters and terminators in yeast.
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- Nature Genetics, 2004, v. 36, n. 9, p. 1014, doi. 10.1038/ng1411
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- Article
Autocatalytic RNA cleavage in the humanß-globin pre-mRNA promotes transcription termination.
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- Nature, 2004, v. 432, n. 7016, p. 526, doi. 10.1038/nature03032
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- Article
Human 5'?3'exonuclease Xrn2 promotes transcription termination at co-transcriptional cleavage sites.
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- Nature, 2004, v. 432, n. 7016, p. 522, doi. 10.1038/nature03035
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- Article
AT-rich sequence elements promote nascent transcript cleavage leading to RNA polymerase II termination.
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- Nucleic Acids Research, 2013, v. 41, n. 3, p. 1797, doi. 10.1093/nar/gks1335
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- Article
Co-transcriptional RNA cleavage provides a failsafe termination mechanism for yeast RNA polymerase I.
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- Nucleic Acids Research, 2011, v. 39, n. 4, p. 1439, doi. 10.1093/nar/gkq894
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- Article
Microprocessor mediates transcriptional termination of long noncoding RNA transcripts hosting microRNAs.
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- Nature Structural & Molecular Biology, 2015, v. 22, n. 4, p. 319, doi. 10.1038/nsmb.2982
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- Article
Human nuclear Dicer restricts the deleterious accumulation of endogenous double-stranded RNA.
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- Nature Structural & Molecular Biology, 2014, v. 21, n. 6, p. 552, doi. 10.1038/nsmb.2827
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- Article
Convergent transcription induces transcriptional gene silencing in fission yeast and mammalian cells.
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- Nature Structural & Molecular Biology, 2012, v. 19, n. 11, p. 1193, doi. 10.1038/nsmb.2392
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- Article
Primary microRNA transcripts are processed co-transcriptionally.
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- Nature Structural & Molecular Biology, 2008, v. 15, n. 9, p. 902, doi. 10.1038/nsmb.1475
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- Article
Terminating transcription in yeast: whether to be a 'nerd' or a 'rat'.
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- Nature Structural & Molecular Biology, 2008, v. 15, n. 8, p. 775, doi. 10.1038/nsmb0808-775
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- Article
RNA polymerase I in yeast transcribes dynamic nucleosomal rDNA.
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- Nature Structural & Molecular Biology, 2007, v. 14, n. 2, p. 123, doi. 10.1038/nsmb1199
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- Article
Transcriptional interference perturbs the binding of Sp1 to the HIV‐1 promoter.
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- Nucleic Acids Research, 1998, v. 26, n. 5, p. 1294, doi. 10.1093/nar/26.5.1294
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- Article
Activation Domains of Transcription Factors Mediate Replication Dependent Transcription from a Minimal HIV-1 Promoter.
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- Nucleic Acids Research, 1996, v. 24, n. 4, p. 549, doi. 10.1093/nar/24.4.549
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- Article