Unravelling the means to an end: RNA polymerase II transcription termination JN Kuehner, EL Pearson, C Moore Nature reviews Molecular cell biology 12 (5), 283-294, 2011 | 409 | 2011 |
Genome-wide distribution of yeast RNA polymerase II and its control by Sen1 helicase EJ Steinmetz, CL Warren, JN Kuehner, B Panbehi, AZ Ansari, DA Brow Molecular cell 24 (5), 735-746, 2006 | 389 | 2006 |
Regulation of a eukaryotic gene by GTP-dependent start site selection and transcription attenuation JN Kuehner, DA Brow Molecular cell 31 (2), 201-211, 2008 | 164 | 2008 |
Quantitative analysis of in vivo initiator selection by yeast RNA polymerase II supports a scanning model JN Kuehner, DA Brow Journal of Biological Chemistry 281 (20), 14119-14128, 2006 | 100 | 2006 |
DNA damage induces targeted, genome-wide variation of poly (A) sites in budding yeast JH Graber, FI Nazeer, P Yeh, JN Kuehner, S Borikar, D Hoskinson, ... Genome research 23 (10), 1690-1703, 2013 | 61 | 2013 |
Reconstitution of CF IA from overexpressed subunits reveals stoichiometry and provides insights into molecular topology JMB Gordon, S Shikov, JN Kuehner, M Liriano, E Lee, W Stafford, ... Biochemistry 50 (47), 10203-10214, 2011 | 43 | 2011 |
Money, sex, and drugs: a case study to teach the genetics of antibiotic resistance KA Cloud-Hansen, JN Kuehner, L Tong, S Miller, J Handelsman CBE—Life Sciences Education 7 (3), 302-309, 2008 | 29 | 2008 |
Stimulation of RNA Polymerase II ubiquitination and degradation by yeast mRNA 3′-end processing factors is a conserved DNA damage response in eukaryotes JN Kuehner, JW Kaufman, C Moore DNA repair 57, 151-160, 2017 | 20 | 2017 |
RNA Polymerase II Transcription Attenuation at the Yeast DNA Repair Gene, DEF1, Involves Sen1-Dependent and Polyadenylation Site-Dependent Termination C Whalen, C Tuohy, T Tallo, JW Kaufman, C Moore, JN Kuehner G3: Genes, Genomes, Genetics 8 (6), 2043-2058, 2018 | 9 | 2018 |
RNA polymerase II transcription attenuation at the yeast DNA repair gene DEF1 is biologically significant and dependent on the Hrp1 RNA-recognition motif ME Amodeo, SPC Mitchell, V Pavan, JN Kuehner G3 13 (1), jkac292, 2023 | 2 | 2023 |
Mechanism and Regulation of Yeast RNA Polymerase II Transcription Initiation and Termination JN Kuehner University of Wisconsin--Madison, 2008 | 1 | 2008 |
A simple, robust, broadly applicable insertion mutagenesis method to create random fluorescent protein: target protein fusions A Pike, C Pietryski, P Deighan, J Kuehner, D Lau, A Seshan, PE March G3: Genes, Genomes, Genetics 14 (5), jkae036, 2024 | | 2024 |
Mutations in yeast Pcf11, a conserved protein essential for mRNA 3′ end processing and transcription termination, elicit the Environmental Stress Response JH Graber, D Hoskinson, H Liu, K Kaczmarek Michaels, PS Benson, ... Genetics 226 (2), iyad199, 2024 | | 2024 |
RNA Polymerase II transcription attenuation at multiple genes in yeast depends on the mRNA 3ʹ-end processing factor Hrp1 and its RNA recognition motif M Roche, S Edouard, J Talluto, V Pavan, J Kuehner Journal of Biological Chemistry 299 (S), 2023 | | 2023 |
Let us know how access to this document benefits you. L Hasman, D Berryman, S McIntosh | | 2013 |
Supplemental Data Regulation of a Eukaryotic Gene by GTP-Dependent Start Site Selection and Transcription Attenuation JN Kuehner, DA Brow | | |