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Research Article

Genetic Selection for Mutations That Reduce or Abolish Ribosomal Recognition of the HIS4 Translational Initiator Region

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Pages 2955-2963 | Received 19 Feb 1988, Accepted 12 Apr 1988, Published online: 31 Mar 2023

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Read on this site (18)

Christoffer Lind, Mauricio Esguerra & Johan Åqvist. (2017) A close-up view of codon selection in eukaryotic initiation. RNA Biology 14:7, pages 815-819.
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Pilar Martin-Marcos, Yuen-Nei Cheung & Alan G. Hinnebusch. (2011) Functional Elements in Initiation Factors 1, 1A, and 2β Discriminate against Poor AUG Context and Non-AUG Start Codons. Molecular and Cellular Biology 31:23, pages 4814-4831.
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Wen-Ling Chiu, Susan Wagner, Anna Herrmannová, Laxminarayana Burela, Fan Zhang, Adesh K. Saini, Leoš Valášek & Alan G. Hinnebusch. (2010) The C-Terminal Region of Eukaryotic Translation Initiation Factor 3a (eIF3a) Promotes mRNA Recruitment, Scanning, and, Together with eIF3j and the eIF3b RNA Recognition Motif, Selection of AUG Start Codons. Molecular and Cellular Biology 30:18, pages 4415-4434.
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Fan Zhang, Naseem A. Gaur, Jiri Hasek, Soon-ja Kim, Hongfang Qiu, Mark J. Swanson & Alan G. Hinnebusch. (2008) Disrupting Vesicular Trafficking at the Endosome Attenuates Transcriptional Activation by Gcn4. Molecular and Cellular Biology 28:22, pages 6796-6818.
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Chingakham Ranjit Singh, Cynthia Curtis, Yasufumi Yamamoto, Nathan S. Hall, Dustin S. Kruse, Hui He, Ernest M. Hannig & Katsura Asano. (2005) Eukaryotic Translation Initiation Factor 5 Is Critical for Integrity of the Scanning Preinitiation Complex and Accurate Control of GCN4 Translation. Molecular and Cellular Biology 25:13, pages 5480-5491.
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José Luis Riechmann, Toshiro Ito & Elliot M. Meyerowitz. (1999) Non-AUG Initiation of AGAMOUS mRNA Translation in Arabidopsis thaliana. Molecular and Cellular Biology 19:12, pages 8505-8512.
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Alison E. Gammie, Bruce G. Stewart, Charles F. Scott & Mark D. Rose. (1999) The Two Forms of Karyogamy Transcription Factor Kar4p Are Regulated by Differential Initiation of Transcription, Translation, and Protein Turnover. Molecular and Cellular Biology 19:1, pages 817-825.
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Hsiu-Jung Lo, Han-Kuei Huang & Thomas F. Donahue. (1998) RNA Polymerase I-Promoted HIS4 Expression Yields Uncapped, Polyadenylated mRNA That Is Unstable and Inefficiently Translated in Saccharomyces cerevisiae. Molecular and Cellular Biology 18:2, pages 665-675.
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Susan McBratney & Peter Sarnow. (1996) Evidence for Involvement of trans-Acting Factors in Selection of the AUG Start Codon during Eukaryotic Translational Initiation. Molecular and Cellular Biology 16:7, pages 3523-3534.
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Peter Detloff & Thomas D. Petes. (1992) Measurements of Excision Repair Tracts Formed during Meiotic Recombination in Saccharomyces cerevisiae. Molecular and Cellular Biology 12:4, pages 1805-1814.
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Ulrich Von Pawel-Rammingen, Stefan Åström & Anders S. Byström. (1992) Mutational Analysis of Conserved Positions Potentially Important for Initiator tRNA Function in Saccharomyces cerevisiae. Molecular and Cellular Biology 12:4, pages 1432-1442.
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Michelle Moritz, Beth A. Pulaski & John L. Woolford$suffix/text()$suffix/text(). (1991) Assembly of 60S Ribosomal Subunits Is Perturbed in Temperature-Sensitive Yeast Mutants Defective in Ribosomal Protein L16. Molecular and Cellular Biology 11:11, pages 5681-5692.
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Peter Detloff, Jennifer Sieber & Thomas D. Petes. (1991) Repair of Specific Base Pair Mismatches Formed during Meiotic Recombination in the Yeast Saccharomyces cerevisiae. Molecular and Cellular Biology 11:2, pages 737-745.
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Jean-Pierre Abastado, Paul F. Miller, Belinda M. Jackson & Alan G. Hinnebusch. (1991) Suppression of Ribosomal Reinitiation at Upstream Open Reading Frames in Amino Acid-Starved Cells Forms the Basis for GCN4 Translational Control. Molecular and Cellular Biology 11:1, pages 486-496.
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Ronald E. Susek & Susan L. Lindquist. (1989) hsp26 of Saccharomyces cerevisiae Is Related to the Superfamily of Small Heat Shock Proteins but Is without a Demonstrable Function. Molecular and Cellular Biology 9:11, pages 5265-5271.
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Marilyn Kozak. (1989) Context Effects and Inefficient Initiation at Non-AUG Codons in Eucaryotic Cell-Free Translation Systems. Molecular and Cellular Biology 9:11, pages 5073-5080.
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A. Mark Cigan, Edward K. Pabich & Thomas F. Donahue. (1988) Mutational Analysis of the HIS4 Translational Initiator Region in Saccharomyces cerevisiae. Molecular and Cellular Biology 8:7, pages 2964-2975.
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Articles from other publishers (6)

Jinsheng DongColin Echeverría Aitken, Anil ThakurByung-Sik ShinJon R. Lorsch & Alan G. Hinnebusch. (2017) Rps3/uS3 promotes mRNA binding at the 40S ribosome entry channel and stabilizes preinitiation complexes at start codons. Proceedings of the National Academy of Sciences 114:11.
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Rafael E. Luna, Haribabu Arthanari, Hiroyuki Hiraishi, Jagpreet Nanda, Pilar Martin-Marcos, Michelle A. Markus, Barak Akabayov, Alexander G. Milbradt, Lunet E. Luna, Hee-Chan Seo, Sven G. Hyberts, Amr Fahmy, Mikhail Reibarkh, David Miles, Patrick R. Hagner, Elizabeth M. O'Day, Tingfang Yi, Assen Marintchev, Alan G. Hinnebusch, Jon R. Lorsch, Katsura Asano & Gerhard Wagner. (2012) The C-Terminal Domain of Eukaryotic Initiation Factor 5 Promotes Start Codon Recognition by Its Dynamic Interplay with eIF1 and eIF2β. Cell Reports 1:6, pages 689-702.
Crossref
Ivaylo P. Ivanov, Gary LoughranMatthew S. Sachs & John F. Atkins. (2010) Initiation context modulates autoregulation of eukaryotic translation initiation factor 1 (eIF1). Proceedings of the National Academy of Sciences 107:42, pages 18056-18060.
Crossref
Ivaylo P. Ivanov, Gary Loughran & John F. Atkins. (2008) uORFs with unusual translational start codons autoregulate expression of eukaryotic ornithine decarboxylase homologs. Proceedings of the National Academy of Sciences 105:29, pages 10079-10084.
Crossref
John E. G. McCarthy. (1998) Posttranscriptional Control of Gene Expression in Yeast. Microbiology and Molecular Biology Reviews 62:4, pages 1492-1553.
Crossref
Nilgun E. Tumer, Bijal A. Parikh, Ping Li & Jonathan D. Dinman. (1998) The Pokeweed Antiviral Protein Specifically Inhibits Ty 1 -Directed +1 Ribosomal Frameshifting and Retrotransposition in Saccharomyces cerevisiae . Journal of Virology 72:2, pages 1036-1042.
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