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Research Article

Paf1p, an RNA Polymerase II-Associated Factor in Saccharomyces cerevisiae, May Have both Positive and Negative Roles in Transcription

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Pages 669-676 | Received 22 Jun 1995, Accepted 21 Nov 1995, Published online: 29 Mar 2023

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Alona Kuzmina, Simona Krasnopolsky & Ran Taube. (2017) Super elongation complex promotes early HIV transcription and its function is modulated by P-TEFb. Transcription 8:3, pages 133-149.
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Qing-Fu Cao, Junichi Yamamoto, Tomoyasu Isobe, Shumpei Tateno, Yuki Murase, Yexi Chen, Hiroshi Handa & Yuki Yamaguchi. (2015) Characterization of the Human Transcription Elongation Factor Rtf1: Evidence for Nonoverlapping Functions of Rtf1 and the Paf1 Complex. Molecular and Cellular Biology 35:20, pages 3459-3470.
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Manasi K. Mayekar, Richard G. Gardner & Karen M. Arndt. (2013) The Recruitment of the Saccharomyces cerevisiae Paf1 Complex to Active Genes Requires a Domain of Rtf1 That Directly Interacts with the Spt4-Spt5 Complex. Molecular and Cellular Biology 33:16, pages 3259-3273.
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Brett N. Tomson, Elia M. Crisucci, Lawrence E. Heisler, Marinella Gebbia, Corey Nislow & Karen M. Arndt. (2013) Effects of the Paf1 Complex and Histone Modifications on snoRNA 3′-End Formation Reveal Broad and Locus-Specific Regulation. Molecular and Cellular Biology 33:1, pages 170-182.
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Hongfang Qiu, Cuihua Hu, Chi-Ming Wong & Alan G. Hinnebusch. (2006) The Spt4p Subunit of Yeast DSIF Stimulates Association of the Paf1 Complex with Elongating RNA Polymerase II. Molecular and Cellular Biology 26:8, pages 3135-3148.
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Karen Adelman, Wenxiang Wei, M. Behfar Ardehali, Janis Werner, Bing Zhu, Danny Reinberg & John T. Lis. (2006) Drosophila Paf1 Modulates Chromatin Structure at Actively Transcribed Genes. Molecular and Cellular Biology 26:1, pages 250-260.
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Donald Prather, Nevan J. Krogan, Andrew Emili, Jack F. Greenblatt & Fred Winston. (2005) Identification and Characterization of Elf1, a Conserved Transcription Elongation Factor in Saccharomyces cerevisiae. Molecular and Cellular Biology 25:22, pages 10122-10135.
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Orit Rozenblatt-Rosen, Christina M. Hughes, Suraj J. Nannepaga, Kalai Selvi Shanmugam, Terry D. Copeland, Tad Guszczynski, James H. Resau & Matthew Meyerson. (2005) The Parafibromin Tumor Suppressor Protein Is Part of a Human Paf1 Complex. Molecular and Cellular Biology 25:2, pages 612-620.
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Cherie L. Mueller & Judith A. Jaehning. (2002) Ctr9, Rtf1, and Leo1 Are Components of the Paf1/RNA Polymerase II Complex. Molecular and Cellular Biology 22:7, pages 1971-1980.
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Meiping Chang, Delores French-Cornay, Hua-ying Fan, Hannah Klein, Clyde L. Denis & Judith A. Jaehning. (1999) A Complex Containing RNA Polymerase II, Paf1p, Cdc73p, Hpr1p, and Ccr4p Plays a Role in Protein Kinase C Signaling. Molecular and Cellular Biology 19:2, pages 1056-1067.
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Xiaoming Shi, Meiping Chang, Alexander J. Wolf, Chun-Hsiang Chang, Ashley A. Frazer-Abel, Paul A. Wade, Zachary F. Burton & Judith A. Jaehning. (1997) Cdc73p and Paf1p Are Found in a Novel RNA Polymerase II-Containing Complex Distinct from the Srbp-Containing Holoenzyme. Molecular and Cellular Biology 17:3, pages 1160-1169.
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Alex M. Francette, Sarah A. Tripplehorn & Karen M. Arndt. (2021) The Paf1 Complex: A Keystone of Nuclear Regulation Operating at the Interface of Transcription and Chromatin. Journal of Molecular Biology 433:14, pages 166979.
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