Nuclear compartmentalization of TERT mRNA and TUG1 lncRNA is driven by intron retention
Journal Article
Overview
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Adult Stem Cells - Induced Pluripotent Stem Cells
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Animals
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Biochemical Phenomena - RNA Splicing
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Carrier Proteins - Telomerase
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Carrier Proteins - Telomerase
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Cell Compartmentation
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Cell Cycle - Mitosis
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Cell Line
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Cell Line - Cell Line, Tumor
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Cell Line - HCT116 Cells
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Cell Line - HeLa Cells
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Cell Line, Transformed - HEK293 Cells
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Cellular Structures - Cell Nucleus
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DNA-Directed DNA Polymerase - Telomerase
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Diagnostic Techniques and Procedures - In Situ Hybridization, Fluorescence
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Diagnostic Techniques and Procedures - In Situ Hybridization, Fluorescence
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Epithelial Cells - HEK293 Cells
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Epithelial Cells - HeLa Cells
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Gene Components - Introns
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Gene Expression Regulation - RNA Splicing
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Genetic Phenomena - Mitosis
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Genetic Techniques - In Situ Hybridization, Fluorescence
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Genetic Techniques - In Situ Hybridization, Fluorescence
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Genome Components - Introns
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Human Embryonic Stem Cells
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Humans
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Investigative Techniques - In Situ Hybridization, Fluorescence
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Investigative Techniques - In Situ Hybridization, Fluorescence
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Metabolism - RNA Splicing
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Mice
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Nuclear Proteins - Telomerase
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Nucleic Acid Precursors - RNA Precursors
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Nucleoproteins - Telomerase
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Organelles - Cell Nucleus
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Pluripotent Stem Cells - Induced Pluripotent Stem Cells
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RNA - RNA Precursors
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RNA Stability
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RNA, Long Noncoding
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RNA, Messenger
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Species Specificity
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Tumor Cells, Cultured - Cell Line, Tumor
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Tumor Cells, Cultured - HCT116 Cells
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Tumor Cells, Cultured - HeLa Cells
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Date in CU Experts
Full Author List
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Dumbovic G; Braunschweig U; Langner HK; Smallegan M; Biayna J; Hass EP; Jastrzebska K; Blencowe B; Cech TR; Caruthers MH
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