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Article

Interaction of the RNP1 Motif in PRT1 with HCR1 Promotes 40S Binding of Eukaryotic Initiation Factor 3 in Yeast

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Pages 2984-2998 | Received 22 Nov 2005, Accepted 26 Jan 2006, Published online: 27 Mar 2023

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Eder Mancera-Martínez, Jailson Brito Querido, Leos Shivaya Valasek, Angelita Simonetti & Yaser Hashem. (2017) ABCE1: A special factor that orchestrates translation at the crossroad between recycling and initiation. RNA Biology 14:10, pages 1279-1285.
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Susan Wagner, Anna Herrmannová, Radek Malík, Lucie Peclinovská & Leoš Shivaya Valášek. (2014) Functional and Biochemical Characterization of Human Eukaryotic Translation Initiation Factor 3 in Living Cells. Molecular and Cellular Biology 34:16, pages 3041-3052.
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Lucie Cuchalová, Tomáš Kouba, Anna Herrmannová, István Dányi, Wen-ling Chiu & Leoš Valášek. (2010) The RNA Recognition Motif of Eukaryotic Translation Initiation Factor 3g (eIF3g) Is Required for Resumption of Scanning of Posttermination Ribosomes for Reinitiation on GCN4 and Together with eIF3i Stimulates Linear Scanning. Molecular and Cellular Biology 30:19, pages 4671-4686.
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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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Articles from other publishers (47)

David J. Young & Nicholas R. Guydosh. (2022) Rebirth of the translational machinery: The importance of recycling ribosomes. BioEssays 44:4, pages 2100269.
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Andrei Stanciu, Juncheng Luo, Lucy Funes, Shanya Galbokke Hewage, Shardul D. Kulkarni & Colin Echeverría Aitken. (2022) eIF3 and Its mRNA-Entry-Channel Arm Contribute to the Recruitment of mRNAs With Long 5′-Untranslated Regions. Frontiers in Molecular Biosciences 8.
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Tatiana Egorova, Nikita Biziaev, Alexey Shuvalov, Elizaveta Sokolova, Sabina Mukba, Konstantin Evmenov, Maria Zotova, Artem Kushchenko, Ekaterina Shuvalova & Elena Alkalaeva. (2021) eIF3j facilitates loading of release factors into the ribosome. Nucleic Acids Research 49:19, pages 11181-11196.
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Hanna Kratzat, Timur Mackens‐Kiani, Michael Ameismeier, Mia Potocnjak, Jingdong Cheng, Estelle Dacheux, Abdelkader Namane, Otto Berninghausen, Franz Herzog, Micheline Fromont‐Racine, Thomas Becker & Roland Beckmann. (2020) A structural inventory of native ribosomal ABCE1‐43S pre‐initiation complexes. The EMBO Journal 40:1.
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Susan Wagner, Anna Herrmannová, Vladislava Hronová, Stanislava Gunišová, Neelam D. Sen, Ross D. Hannan, Alan G. Hinnebusch, Nikolay E. Shirokikh, Thomas Preiss & Leoš Shivaya Valášek. (2020) Selective Translation Complex Profiling Reveals Staged Initiation and Co-translational Assembly of Initiation Factor Complexes. Molecular Cell 79:4, pages 546-560.e7.
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Jakub Zeman, Yuzuru Itoh, Zdeněk Kukačka, Michal Rosůlek, Daniel Kavan, Tomáš Kouba, Myrte E Jansen, Mahabub P Mohammad, Petr Novák & Leoš S Valášek. (2019) Binding of eIF3 in complex with eIF5 and eIF1 to the 40S ribosomal subunit is accompanied by dramatic structural changes. Nucleic Acids Research 47:15, pages 8282-8300.
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David J. Young & Nicholas R. Guydosh. (2019) Hcr1/eIF3j Is a 60S Ribosomal Subunit Recycling Accessory Factor In Vivo. Cell Reports 28:1, pages 39-50.e4.
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Clyde L. Denis, Thomas M. Laue & Xin Wang. (2018) Identification of a 57S translation complex containing closed-loop factors and the 60S ribosome subunit. Scientific Reports 8:1.
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Yaser HashemJoachim Frank. (2018) The Jigsaw Puzzle of mRNA Translation Initiation in Eukaryotes: A Decade of Structures Unraveling the Mechanics of the Process. Annual Review of Biophysics 47:1, pages 125-151.
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Leoš Shivaya Valášek, Jakub Zeman, Susan Wagner, Petra Beznosková, Zuzana Pavlíková, Mahabub Pasha Mohammad, Vladislava Hronová, Anna Herrmannová, Yaser Hashem & Stanislava Gunišová. (2017) Embraced by eIF3: structural and functional insights into the roles of eIF3 across the translation cycle. Nucleic Acids Research 45:19, pages 10948-10968.
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Alan G. Hinnebusch. (2017) Structural Insights into the Mechanism of Scanning and Start Codon Recognition in Eukaryotic Translation Initiation. Trends in Biochemical Sciences 42:8, pages 589-611.
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Susan Wagner, Anna Herrmannová, Darina Šikrová & Leoš Shivaya Valášek. (2016) Human eIF3b and eIF3a serve as the nucleation core for the assembly of eIF3 into two interconnected modules: the yeast-like core and the octamer. Nucleic Acids Research 44:22, pages 10772-10788.
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Colin Echeverría Aitken, Petra Beznosková, Vladislava Vlčkova, Wen-Ling Chiu, Fujun Zhou, Leoš Shivaya Valášek, Alan G Hinnebusch & Jon R Lorsch. (2016) Eukaryotic translation initiation factor 3 plays distinct roles at the mRNA entry and exit channels of the ribosomal preinitiation complex. eLife 5.
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Divya Khandige Sharma, Kamiko Bressler, Harshil Patel, Nirujah Balasingam & Nehal Thakor. (2016) Role of Eukaryotic Initiation Factors during Cellular Stress and Cancer Progression. Journal of Nucleic Acids 2016, pages 1-19.
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Christian Borgo, Cinzia Franchin, Valentina Salizzato, Luca Cesaro, Giorgio Arrigoni, Laura Matricardi, Lorenzo A. Pinna & Arianna Donella-Deana. (2015) Protein kinase CK2 potentiates translation efficiency by phosphorylating eIF3j at Ser127. Biochimica et Biophysica Acta (BBA) - Molecular Cell Research 1853:7, pages 1693-1701.
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Christopher H S Aylett, Daniel Boehringer, Jan P Erzberger, Tanja Schaefer & Nenad Ban. (2015) Structure of a Yeast 40S–eIF1–eIF1A–eIF3–eIF3j initiation complex. Nature Structural & Molecular Biology 22:3, pages 269-271.
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Antonio M Rezende, Ludmila A Assis, Eduardo C Nunes, Tamara D da Costa Lima, Fabricio K Marchini, Eden R Freire, Christian RS Reis & Osvaldo P de Melo Neto. (2014) The translation initiation complex eIF3 in trypanosomatids and other pathogenic excavates – identification of conserved and divergent features based on orthologue analysis. BMC Genomics 15:1.
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Masaaki Sokabe & Christopher S. Fraser. (2014) Human Eukaryotic Initiation Factor 2 (eIF2)-GTP-Met-tRNAi Ternary Complex and eIF3 Stabilize the 43 S Preinitiation Complex. Journal of Biological Chemistry 289:46, pages 31827-31836.
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Jan P. Erzberger, Florian Stengel, Riccardo Pellarin, Suyang Zhang, Tanja Schaefer, Christopher H.S. Aylett, Peter Cimermančič, Daniel Boehringer, Andrej Sali, Ruedi Aebersold & Nenad Ban. (2014) Molecular Architecture of the 40S⋅eIF1⋅eIF3 Translation Initiation Complex. Cell 158:5, pages 1123-1135.
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Alan G. Hinnebusch. (2014) The Scanning Mechanism of Eukaryotic Translation Initiation. Annual Review of Biochemistry 83:1, pages 779-812.
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Yi Liu, Piotr Neumann, Bernhard Kuhle, Thomas Monecke, Stephanie Schell, Ashwin Chari & Ralf Ficner. (2014) Translation Initiation Factor eIF3b Contains a Nine-Bladed β-Propeller and Interacts with the 40S Ribosomal Subunit. Structure 22:6, pages 923-930.
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Sohail Khoshnevis, Stanislava Gunišová, Vladislava Vlčková, Tomáš Kouba, Piotr Neumann, Petra Beznosková, Ralf Ficner & Leoš Shivaya Valášek. (2022) Structural integrity of the PCI domain of eIF3a/TIF32 is required for mRNA recruitment to the 43S pre-initiation complexes. Nucleic Acids Research 42:6, pages 4123-4139.
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Petra Beznosková, Lucie Cuchalová, Susan Wagner, Christopher J. Shoemaker, Stanislava Gunišová, Tobias von der Haar & Leoš Shivaya Valášek. (2013) Translation Initiation Factors eIF3 and HCR1 Control Translation Termination and Stop Codon Read-Through in Yeast Cells. PLoS Genetics 9:11, pages e1003962.
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Martina Karásková, Stanislava Gunišová, Anna Herrmannová, Susan Wagner, Vanda Munzarová & Leoš Shivaya Valášek. (2012) Functional Characterization of the Role of the N-terminal Domain of the c/Nip1 Subunit of Eukaryotic Initiation Factor 3 (eIF3) in AUG Recognition. Journal of Biological Chemistry 287:34, pages 28420-28434.
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Tomáš Kouba, István Dányi, Stanislava Gunišová, Vanda Munzarová, Vladislava Vlčková, Lucie Cuchalová, Andreas Neueder, Philipp Milkereit & Leoš Shivaya Valášek. (2012) Small Ribosomal Protein RPS0 Stimulates Translation Initiation by Mediating 40S-Binding of eIF3 via Its Direct Contact with the eIF3a/TIF32 Subunit. PLoS ONE 7:7, pages e40464.
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