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Transcriptional Regulation

The Rpb6 Subunit of Fission Yeast RNA Polymerase II Is a Contact Target of the Transcription Elongation Factor TFIIS

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Pages 1263-1270 | Received 05 Aug 1999, Accepted 16 Nov 1999, Published online: 28 Mar 2023

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Jie Huang & Xiong Ji. (2023) Never a dull enzyme, RNA polymerase II. Transcription 14:1-2, pages 49-67.
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Ying Huang, Robert V. Intine, Amy Mozlin, Samuel Hasson & Richard J. Maraia. (2005) Mutations in the RNA Polymerase III Subunit Rpc11p That Decrease RNA 3′ Cleavage Activity Increase 3′-Terminal Oligo(U) Length and La-Dependent tRNA Processing. Molecular and Cellular Biology 25:2, pages 621-636.
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Qian Tan, Meredith H. Prysak & Nancy A. Woychik. (2003) Loss of the Rpb4/Rpb7 Subcomplex in a Mutant Form of the Rpb6 Subunit Shared by RNA Polymerases I, II, and III. Molecular and Cellular Biology 23:9, pages 3329-3338.
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Dmitry Kulish & Kevin Struhl. (2001) TFIIS Enhances Transcriptional Elongation through an Artificial Arrest Site In Vivo. Molecular and Cellular Biology 21:13, pages 4162-4168.
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Randal J. Shaw & Daniel Reines. (2000) Saccharomyces cerevisiae Transcription Elongation Mutants Are Defective in PUR5 Induction in Response to Nucleotide Depletion. Molecular and Cellular Biology 20:20, pages 7427-7437.
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Haibo Wang, Sandra Schilbach, Momchil Ninov, Henning Urlaub & Patrick Cramer. (2022) Structures of transcription preinitiation complex engaged with the +1 nucleosome. Nature Structural & Molecular Biology 30:2, pages 226-232.
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Shachinthaka D. Dissanayaka Mudiyanselage, Junfei Ma, Tibor Pechan, Olga Pechanova, Bin Liu & Ying Wang. (2022) A remodeled RNA polymerase II complex catalyzing viroid RNA-templated transcription. PLOS Pathogens 18:9, pages e1010850.
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Masahiko Okuda, Tetsufumi Suwa, Hidefumi Suzuki, Yuki Yamaguchi & Yoshifumi Nishimura. (2022) Three human RNA polymerases interact with TFIIH via a common RPB6 subunit. Nucleic Acids Research 50:1, pages 1-16.
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Manlu Zhu, Haoyan Mu, Fei Han, Qian Wang & Xiongfeng Dai. (2021) Quantitative analysis of asynchronous transcription-translation and transcription processivity in Bacillus subtilis under various growth conditions. iScience 24:11, pages 103333.
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Mohammad Kashif, Abrar Ahmad, Shafia Siddiqui, Bhupendra Kumar & Mohd Jahir Khan. (2018) RNAPII CTD: A key regulator in eukaryotic gene expression system. Gene Reports 11, pages 188-195.
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Cuevas-Bermúdez Abel, Martínez-Fernández Verónica, Garrido-Godino Ana I.Navarro Francisco. 2018. The Yeast Role in Medical Applications. The Yeast Role in Medical Applications.
Daria EsyuninaEvgeny Klimuk, Konstantin Severinov & Andrey Kulbachinskiy. (2015) Distinct pathways of RNA polymerase regulation by a phage-encoded factor. Proceedings of the National Academy of Sciences 112:7, pages 2017-2022.
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Javier M. Rodríguez & Maria L. Salas. (2013) African swine fever virus transcription. Virus Research 173:1, pages 15-28.
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Nimisha Sharma & Surbhi Mehta. 2009. Yeast Biotechnology: Diversity and Applications. Yeast Biotechnology: Diversity and Applications 405 432 .
Santiago Martínez-Calvillo, Alka Saxena, Amanda Green, Aaron Leland & Peter J. Myler. (2007) Characterization of the RNA polymerase II and III complexes in Leishmania major. International Journal for Parasitology 37:5, pages 491-502.
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Renjith Mathew & Dipankar Chatterji. (2006) The evolving story of the omega subunit of bacterial RNA polymerase. Trends in Microbiology 14:10, pages 450-455.
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Yukiko Imazawa, Koji Hisatake, Hiroshi Mitsuzawa, Masahito Matsumoto, Tohru Tsukui, Kaori Nakagawa, Tomoyoshi Nakadai, Miho Shimada, Akira Ishihama & Yasuhisa Nogi. (2005) The Fission Yeast Protein Ker1p Is an Ortholog of RNA Polymerase I Subunit A14 in Saccharomyces cerevisiae and Is Required for Stable Association of Rrn3p and RPA21 in RNA Polymerase I. Journal of Biological Chemistry 280:12, pages 11467-11474.
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Hideki Yashiroda & Keiji Tanaka. (2004) Hub1 is an essential ubiquitin-like protein without functioning as a typical modifier in fission yeast. Genes to Cells 9:12, pages 1189-1197.
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Makoto Kimura, Hiroshi Mitsuzawa & Akira Ishihama. 2004. The Molecular Biology of Schizosaccharomyces pombe. The Molecular Biology of Schizosaccharomyces pombe 329 342 .
Anna V. Kuznetsova, Jaroslaw Meller, Phillip O. Schnell, James A. Nash, Monika L. Ignacak, Yolanda Sanchez, Joan W. Conaway, Ronald C. Conaway & Maria F. Czyzyk-Krzeska. (2003) von Hippel–Lindau protein binds hyperphosphorylated large subunit of RNA polymerase II through a proline hydroxylation motif and targets it for ubiquitination. Proceedings of the National Academy of Sciences 100:5, pages 2706-2711.
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Abigail J. Smith, Yan Ling & Garry T. Morgan. (2003) Subnuclear Localization and Cajal Body Targeting of Transcription Elongation Factor TFIIS in Amphibian Oocytes. Molecular Biology of the Cell 14:3, pages 1255-1267.
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Kaori Nakagawa, Koji Hisatake, Yukiko Imazawa, Akira Ishiguro, Masahito Matsumoto, Louise Pape, Akira Ishihama & Yasuhisa Nogi. (2003) The fission yeast RPA51 is a functional homolog of the budding yeast A49 subunit of RNA polymerase I and required for maximizing transcription of ribosomal DNA. Genes & Genetic Systems 78:3, pages 199-209.
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Daniel Reines. 2003. RNA Polymerases and Associated Factors, Part D. RNA Polymerases and Associated Factors, Part D 284 292 .
Rachel N Fish & Caroline M Kane. (2002) Promoting elongation with transcript cleavage stimulatory factors. Biochimica et Biophysica Acta (BBA) - Gene Structure and Expression 1577:2, pages 287-307.
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Randal J. Shaw, Judith L. Wilson, Karen T. Smith & Daniel Reines. (2001) Regulation of an IMP Dehydrogenase Gene and Its Overexpression in Drug-sensitive Transcription Elongation Mutants of Yeast. Journal of Biological Chemistry 276:35, pages 32905-32916.
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Megan Wind-Rotolo & Daniel Reines. (2001) Analysis of Gene Induction and Arrest Site Transcription in Yeast with Mutations in the Transcription Elongation Machinery. Journal of Biological Chemistry 276:15, pages 11531-11538.
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Nell B. Shimasaki & Caroline M. Kane. (2000) Structural Basis for the Species-specific Activity of TFIIS. Journal of Biological Chemistry 275:47, pages 36541-36549.
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