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Nucleic Acids Research|May 30, 2013
Splicing-coupled 3' end formation requires a terminal splice acceptor site, but not intron excisionLee Davidson, Steven WestGenes & Development|January 31, 2014
3' end formation of pre-mRNA and phosphorylation of Ser2 on the RNA polymerase II CTD are reciprocally coupled in human cellsLee Davidson, Lisa Muniz, Steven WestMolecular and Cellular Biology|April 22, 2015
Poly(A) Polymerase and the Nuclear Poly(A) Binding Protein, PABPN1, Coordinate the Splicing and Degradation of a Subset of Human Pre-mRNAsLisa Muniz, Lee Davidson, Steven WestThe EMBO Journal|April 24, 2012
Co-transcriptional degradation of aberrant pre-mRNA by Xrn2Lee Davidson, Alastair Kerr, Steven WestGenes & Development|December 6, 2019
A unified allosteric/torpedo mechanism for transcriptional termination on human protein-coding genesJoshua D Eaton, Laura Francis, Lee Davidson, et al.Cell Reports|October 28, 2020
Integrator-Dependent and Allosteric/Intrinsic Mechanisms Ensure Efficient Termination of snRNA TranscriptionLee Davidson, Laura Francis, Joshua D Eaton, et al.Elife|July 8, 2024
Human promoter directionality is determined by transcriptional initiation and the opposing activities of INTS11 and CDK9Joshua D Eaton, Jessica Board, Lee Davidson, et al.Elife|April 29, 2021
ZC3H4 restricts non-coding transcription in human cellsChris Estell, Lee Davidson, Pieter C Steketee, et al.Molecular Cell|June 17, 2023
A restrictor complex of ZC3H4, WDR82, and ARS2 integrates with PNUTS to control unproductive transcriptionChris Estell, Lee Davidson, Joshua D Eaton, et al.Genes & Development|February 13, 2018
Xrn2 accelerates termination by RNA polymerase II, which is underpinned by CPSF73 activityJoshua D Eaton, Lee Davidson, David L V Bauer, et al.Pageof 2