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Gene Expression

trans-Spliced Caenorhabditis elegans mRNAs Retain Trimethylguanosine Caps

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Pages 1764-1768 | Received 24 Apr 1989, Accepted 14 Dec 1989, Published online: 31 Mar 2023

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Venkat S.R.K. Yedavalli & Kuan-Teh Jeang. (2011) Rev-ing up post-transcriptional HIV-1 RNA expression. RNA Biology 8:2, pages 195-199.
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Adam Wallace, Megan E. Filbin, Bethany Veo, Craig McFarland, Janusz Stepinski, Marzena Jankowska-Anyszka, Edward Darzynkiewicz & Richard E. Davis. (2010) The Nematode Eukaryotic Translation Initiation Factor 4E/G Complex Works with a trans-Spliced Leader Stem-Loop To Enable Efficient Translation of Trimethylguanosine-Capped RNAs. Molecular and Cellular Biology 30:8, pages 1958-1970.
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Leah S. Cohen, Claudette Mikhli, Xinfu Jiao, Megerditch Kiledjian, Glenna Kunkel & Richard E. Davis. (2005) Dcp2 Decaps m2,2,7GpppN-Capped RNAs, and Its Activity Is Sequence and Context Dependent. Molecular and Cellular Biology 25:20, pages 8779-8791.
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Tzvetanka D. Dinkova, Brett D. Keiper, Nadejda L. Korneeva, Eric J. Aamodt & Robert E. Rhoads. (2005) Translation of a Small Subset of Caenorhabditis elegans mRNAs Is Dependent on a Specific Eukaryotic Translation Initiation Factor 4E Isoform. Molecular and Cellular Biology 25:1, pages 100-113.
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Kyunghee Lee & Kiwon Song. (2005) Functional analysis of the putative BUB2 homologues of c. elegans in the spindle position checkpoint. Integrative Biosciences 9:2, pages 87-94.
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Kevin van Doren & David Hirsh. (1990) Notes: mRNAs That Mature through trans-Splicing in Caenorhabditis elegans Have a Trimethylguanosine Cap at Their 5' Termini. Molecular and Cellular Biology 10:4, pages 1769-1772.
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Articles from other publishers (1)

Donald Evans, Diego Zorio, Margaret MacMorris, Carlos E. Winter, Kristi Lea & Thomas Blumenthal. (1997) Operons and SL2 trans-splicing exist in nematodes outside the genus  Caenorhabditis . Proceedings of the National Academy of Sciences 94:18, pages 9751-9756.
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