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Elife|November 15, 2012
Nascent-Seq reveals novel features of mouse circadian transcriptional regulationJerome S Menet, Joseph Rodriguez, Katharine C Abruzzi, et al.Methods in Enzymology|February 10, 2015
RNA-seq profiling of small numbers of Drosophila neuronsKatharine Abruzzi, Xiao Chen, Emi Nagoshi, et al.Genes & Development|August 3, 2006
In vivo commitment to yeast cotranscriptional splicing is sensitive to transcription elongation mutantsScott A Lacadie, Daniel F Tardiff, Sebastian Kadener, et al.RNA (New York, N.Y.)|October 26, 2012
Cotranscriptional splicing efficiency differs dramatically between Drosophila and mouseYevgenia L Khodor, Jerome S Menet, Michael Tolan, et al.Proceedings of the National Academy of Sciences of the United States of America|June 13, 2002
Regulation of alternative splicing by a transcriptional enhancer through RNA pol II elongationSebastián Kadener, Juan Pablo Fededa, Michael Rosbash, et al.Scientific Reports|February 15, 2017
A pupal transcriptomic screen identifies Ral as a target of store-operated calcium entry in Drosophila neuronsShlesha Richhariya, Siddharth Jayakumar, Katharine Abruzzi, et al.Neuron|May 18, 2010
Light-mediated TIM degradation within Drosophila pacemaker neurons (s-LNvs) is neither necessary nor sufficient for delay zone phase shiftsChih-Hang Anthony Tang, Erica Hinteregger, Yuhua Shang, et al.Scientific Reports|May 18, 2018
Computational identification and validation of alternative splicing in ZSF1 rat RNA-seq data, a preclinical model for type 2 diabetic nephropathyChi Zhang, Ken Dower, Baohong Zhang, et al.Assay and Drug Development Technologies|February 4, 2015
Probing the virus host interaction in high containment: an approach using pooled short hairpin RNAClaire Marie Filone, Ken Dower, Glenn S Cowley, et al.JCI Insight|July 8, 2026
Unleashing innovative cross-organ fibrosis therapies by harnessing the omics revolutionCynthia Lebeaupin, Katelyn L Donahue, Ken Dower, et al.Pageof 19