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Molecular Cell|September 16, 2006
PP1/PP2A phosphatases are required for the second step of Pre-mRNA splicing and target specific snRNP proteinsYongsheng Shi, Bharat Reddy, James L ManleyGenes & Development|May 27, 1999
Phosphorylated RNA polymerase II stimulates pre-mRNA splicingY Hirose, R Tacke, J L ManleyMolecular and Cellular Biology|September 1, 1995
The transcriptional repressor even-skipped interacts directly with TATA-binding proteinM Um, C Li, J L ManleyNon-Coding RNA|April 10, 2018
RNA surveillance by the nuclear RNA exosome: mechanisms and significanceKoichi Ogami, Yaqiong Chen, James L ManleyNature Structural & Molecular Biology|September 17, 2008
Phosphorylation switches the general splicing repressor SRp38 to a sequence-specific activatorYing Feng, Mo Chen, James L ManleyGenes & Development|February 19, 2008
Sumoylation regulates multiple aspects of mammalian poly(A) polymerase functionVasupradha Vethantham, Nishta Rao, James L ManleyAdvances in Experimental Medicine and Biology|February 16, 2017
Roles of Sumoylation in mRNA Processing and MetabolismPatricia Richard, Vasupradha Vethantham, James L ManleyNature Communications|July 12, 2012
The yeast regulator of transcription protein Rtr1 lacks an active site and phosphatase activityKehui Xiang, James L Manley, Liang TongMolecular and Cellular Biology|February 1, 1985
RNA sequence containing hexanucleotide AAUAAA directs efficient mRNA polyadenylation in vitroJ L Manley, H Yu, L RynerRNA Biology|September 27, 2024
WDR33 alternative polyadenylation is dependent on stochastic poly(a) site usage and splicing efficienciesLizhi Liu, Takahiro Seimiya, James L ManleyPageof 34