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  • Author: Morse RH
  • References

Author: Morse RH


References 39 references


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  • Morse RH (2023) Transcriptional repression by the histone tails in budding yeast is mediated by Rpd3, Tup1-Ssn6, and Bur6/NC2. Gene 878:147572 PMID:37336275
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  • Morse RH (2022) Function and dynamics of the Mediator complex: novel insights and new frontiers. Transcription 13(1-3):39-52 PMID:35708525
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  • Salinero AC, et al. (2022) Reliance of Host-Encoded Regulators of Retromobility on Ty1 Promoter Activity or Architecture. Front Mol Biosci 9:896215 PMID:35847981
    • SGD Paper
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  • Sarkar D, et al. (2022) Mediator dynamics during heat shock in budding yeast. Genome Res 32(1):111-123 PMID:34785526
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  • Knoll ER, et al. (2020) Kin28 depletion increases association of TFIID subunits Taf1 and Taf4 with promoters in Saccharomyces cerevisiae. Nucleic Acids Res 48(8):4244-4255 PMID:32182349
    • SGD Paper
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  • Knoll ER, et al. (2018) Role of the pre-initiation complex in Mediator recruitment and dynamics. Elife 7 PMID:30540252
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  • Salinero AC, et al. (2018) The Mediator co-activator complex regulates Ty1 retromobility by controlling the balance between Ty1i and Ty1 promoters. PLoS Genet 14(2):e1007232 PMID:29462141
    • SGD Paper
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  • Ansari SA, et al. (2016) Mediator, TATA-binding protein, and RNA polymerase II contribute to low histone occupancy at active gene promoters in yeast. J Biol Chem 291(19):9938 PMID:27197204
    • SGD Paper
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  • Paul E, et al. (2015) Chromatin mediation of a transcriptional memory effect in yeast. G3 (Bethesda) 5(5):829-38 PMID:25748434
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  • Paul E, et al. (2015) Genome-wide association of mediator and RNA polymerase II in wild-type and mediator mutant yeast. Mol Cell Biol 35(1):331-42 PMID:25368384
    • SGD Paper
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  • Ansari SA, et al. (2014) Mediator, TATA-binding protein, and RNA polymerase II contribute to low histone occupancy at active gene promoters in yeast. J Biol Chem 289(21):14981-95 PMID:24727477
    • SGD Paper
    • DOI full text
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  • Spain MM, et al. (2014) The RSC complex localizes to coding sequences to regulate Pol II and histone occupancy. Mol Cell 56(5):653-66 PMID:25457164
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  • Ansari SA and Morse RH (2012) Selective role of Mediator tail module in the transcription of highly regulated genes in yeast. Transcription 3(3):110-4 PMID:22771944
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  • Ansari SA, et al. (2012) Distinct role of Mediator tail module in regulation of SAGA-dependent, TATA-containing genes in yeast. EMBO J 31(1):44-57 PMID:21971086
    • SGD Paper
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  • Ganapathi M, et al. (2011) Extensive role of the general regulatory factors, Abf1 and Rap1, in determining genome-wide chromatin structure in budding yeast. Nucleic Acids Res 39(6):2032-44 PMID:21081559
    • SGD Paper
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  • Tsui K, et al. (2011) Evolution of nucleosome occupancy: conservation of global properties and divergence of gene-specific patterns. Mol Cell Biol 31(21):4348-55 PMID:21896781
    • SGD Paper
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  • Ansari SA, et al. (2009) Mediator complex association with constitutively transcribed genes in yeast. Proc Natl Acad Sci U S A 106(39):16734-9 PMID:19805365
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  • Morse RH (2009) Analysis of DNA topology in yeast chromatin. Methods Mol Biol 523:93-108 PMID:19381919
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  • Singh N, et al. (2009) The Ess1 prolyl isomerase is required for transcription termination of small noncoding RNAs via the Nrd1 pathway. Mol Cell 36(2):255-66 PMID:19854134
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  • He Q, et al. (2008) Dispersed mutations in histone H3 that affect transcriptional repression and chromatin structure of the CHA1 promoter in Saccharomyces cerevisiae. Eukaryot Cell 7(10):1649-60 PMID:18658255
    • SGD Paper
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  • He Q, et al. (2008) Mediator requirement downstream of chromatin remodeling during transcriptional activation of CHA1 in yeast. J Biol Chem 283(9):5276-86 PMID:18093974
    • SGD Paper
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  • Lee W, et al. (2007) A high-resolution atlas of nucleosome occupancy in yeast. Nat Genet 39(10):1235-44 PMID:17873876
    • SGD Paper
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  • Sertil O, et al. (2007) Direct role for the Rpd3 complex in transcriptional induction of the anaerobic DAN/TIR genes in yeast. Mol Cell Biol 27(6):2037-47 PMID:17210643
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  • Yarragudi A, et al. (2007) Genome-wide analysis of transcriptional dependence and probable target sites for Abf1 and Rap1 in Saccharomyces cerevisiae. Nucleic Acids Res 35(1):193-202 PMID:17158163
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  • Yu C, et al. (2006) Contribution of the histone H3 and H4 amino termini to Gcn4p- and Gcn5p-mediated transcription in yeast. J Biol Chem 281(14):9755-64 PMID:16461773
    • SGD Paper
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  • Sabet N, et al. (2004) Genome-wide analysis of the relationship between transcriptional regulation by Rpd3p and the histone H3 and H4 amino termini in budding yeast. Mol Cell Biol 24(20):8823-33 PMID:15456858
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    • Reference supplement
  • Yarragudi A, et al. (2004) Comparison of ABF1 and RAP1 in chromatin opening and transactivator potentiation in the budding yeast Saccharomyces cerevisiae. Mol Cell Biol 24(20):9152-64 PMID:15456886
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  • Sabet N, et al. (2003) Global and specific transcriptional repression by the histone H3 amino terminus in yeast. Proc Natl Acad Sci U S A 100(7):4084-9 PMID:12649325
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  • Stafford GA and Morse RH (2001) GCN5 dependence of chromatin remodeling and transcriptional activation by the GAL4 and VP16 activation domains in budding yeast. Mol Cell Biol 21(14):4568-78 PMID:11416135
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  • Yu L, et al. (2001) The N-terminal and C-terminal domains of RAP1 are dispensable for chromatin opening and GCN4-mediated HIS4 activation in budding yeast. J Biol Chem 276(35):33257-64 PMID:11413146
    • SGD Paper
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  • Morse RH (2000) RAP, RAP, open up! New wrinkles for RAP1 in yeast. Trends Genet 16(2):51-3 PMID:10652526
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  • Ryan MP, et al. (2000) Artificially recruited TATA-binding protein fails to remodel chromatin and does not activate three promoters that require chromatin remodeling. Mol Cell Biol 20(16):5847-57 PMID:10913168
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  • Balasubramanian B and Morse RH (1999) Binding of Gal4p and bicoid to nucleosomal sites in yeast in the absence of replication. Mol Cell Biol 19(4):2977-85 PMID:10082565
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  • Morse RH (1999) Analysis of DNA topology in yeast chromatin. Methods Mol Biol 119:379-93 PMID:10804527
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  • Ryan MP, et al. (1999) Assays for nucleosome positioning in yeast. Methods Enzymol 304:376-99 PMID:10372372
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  • Yu L and Morse RH (1999) Chromatin opening and transactivator potentiation by RAP1 in Saccharomyces cerevisiae. Mol Cell Biol 19(8):5279-88 PMID:10409719
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  • Ryan MP, et al. (1998) SWI-SNF complex participation in transcriptional activation at a step subsequent to activator binding. Mol Cell Biol 18(4):1774-82 PMID:9528749
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  • Stafford GA and Morse RH (1997) Chromatin remodeling by transcriptional activation domains in a yeast episome. J Biol Chem 272(17):11526-34 PMID:9111067
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  • Morse RH (1993) Nucleosome disruption by transcription factor binding in yeast. Science 262(5139):1563-6 PMID:8248805
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