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A human RNA polymerase II-containing complex associated with factors necessary for spliceosome assembly.
J Biol Chem. 2002 Mar 15;277(11):9302-6. doi: 10.1074/jbc.M110516200. Epub 2001 Dec 31.
2
Pol II phosphorylation regulates a switch between transcriptional and splicing condensates.
Nature. 2019 Aug;572(7770):543-548. doi: 10.1038/s41586-019-1464-0. Epub 2019 Aug 7.
3
Efficient RNA polymerase II pause release requires U2 snRNP function.
Mol Cell. 2021 May 6;81(9):1920-1934.e9. doi: 10.1016/j.molcel.2021.02.016. Epub 2021 Mar 8.
4
The in vivo kinetics of RNA polymerase II elongation during co-transcriptional splicing.
PLoS Biol. 2011 Jan 11;9(1):e1000573. doi: 10.1371/journal.pbio.1000573.
5
Structure of a transcribing RNA polymerase II-U1 snRNP complex.
Science. 2021 Jan 15;371(6526):305-309. doi: 10.1126/science.abf1870.
7
The WW domain-containing proteins interact with the early spliceosome and participate in pre-mRNA splicing in vivo.
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8
The RNA polymerase C-terminal domain: a new role in spliceosome assembly.
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9
SR proteins function in coupling RNAP II transcription to pre-mRNA splicing.
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10
Co-transcriptional splicing and the CTD code.
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引用本文的文献

1
Pre-mRNA splicing and its cotranscriptional connections.
Trends Genet. 2023 Sep;39(9):672-685. doi: 10.1016/j.tig.2023.04.008. Epub 2023 May 24.
2
U2AF assemblies drive sequence-specific splice site recognition.
EMBO Rep. 2019 Aug;20(8):e47604. doi: 10.15252/embr.201847604. Epub 2019 Jul 4.
4
Nuclear import of RNA polymerase II is coupled with nucleocytoplasmic shuttling of the RNA polymerase II-associated protein 2.
Nucleic Acids Res. 2013 Aug;41(14):6881-91. doi: 10.1093/nar/gkt455. Epub 2013 May 30.
5
Cotranscriptional splicing efficiency differs dramatically between Drosophila and mouse.
RNA. 2012 Dec;18(12):2174-86. doi: 10.1261/rna.034090.112. Epub 2012 Oct 24.
6
Penetrance of biallelic SMARCAL1 mutations is associated with environmental and genetic disturbances of gene expression.
Hum Mol Genet. 2012 Jun 1;21(11):2572-87. doi: 10.1093/hmg/dds083. Epub 2012 Feb 28.
7
Co-transcriptional regulation of alternative pre-mRNA splicing.
Biochim Biophys Acta. 2012 Jul;1819(7):673-83. doi: 10.1016/j.bbagrm.2012.01.014. Epub 2012 Feb 2.
8
Pre-mRNA splicing during transcription in the mammalian system.
Wiley Interdiscip Rev RNA. 2011 Sep-Oct;2(5):700-17. doi: 10.1002/wrna.86. Epub 2011 May 2.
9
RNA-mediated displacement of an inhibitory snRNP complex activates transcription elongation.
Nat Struct Mol Biol. 2010 Jul;17(7):815-21. doi: 10.1038/nsmb.1827. Epub 2010 Jun 20.
10
Polyadenylation releases mRNA from RNA polymerase II in a process that is licensed by splicing.
RNA. 2009 May;15(5):823-36. doi: 10.1261/rna.1409209. Epub 2009 Mar 20.

本文引用的文献

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Structural basis of transcription: an RNA polymerase II elongation complex at 3.3 A resolution.
Science. 2001 Jun 8;292(5523):1876-82. doi: 10.1126/science.1059495. Epub 2001 Apr 19.
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Connecting transcription to messenger RNA processing.
Trends Biochem Sci. 2000 Jun;25(6):290-3. doi: 10.1016/s0968-0004(00)01591-7.
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Like attracts like: getting RNA processing together in the nucleus.
Science. 2000 May 26;288(5470):1385-9. doi: 10.1126/science.288.5470.1385.
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Association of the rat heterogeneous nuclear RNA-ribonucleoprotein F with TATA-binding protein.
FEBS Lett. 1999 Aug 27;457(2):251-4. doi: 10.1016/s0014-5793(99)01048-0.
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RNA polymerase II targets pre-mRNA splicing factors to transcription sites in vivo.
Mol Cell. 1999 Jun;3(6):697-705. doi: 10.1016/s1097-2765(01)80002-2.
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Topological localization of the carboxyl-terminal domain of RNA polymerase II in the initiation complex.
J Biol Chem. 1999 Jul 9;274(28):19868-73. doi: 10.1074/jbc.274.28.19868.
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DNA bending and wrapping around RNA polymerase: a "revolutionary" model describing transcriptional mechanisms.
Microbiol Mol Biol Rev. 1999 Jun;63(2):457-78. doi: 10.1128/MMBR.63.2.457-478.1999.

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