Substitutional RNA Editing in Plant Organelles
Author:
Publisher
Springer US
Link
http://link.springer.com/content/pdf/10.1007/978-1-0716-0787-9_1
Reference23 articles.
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2. Levanon EY, Eisenberg E, Yelin R, Nemzer S, Hallegger M, Shemesh R, Fligelman ZY, Shoshan A, Pollock SR, Sztybel D, Olshansky M, Rechavi G, Jantsch MF (2004) Systematic identification of abundant A-to-I editing sites in the human transcriptome. Nat Biotechnol 22:1001–1005
3. Ichinose M, Sugita M (2017) RNA editing and its molecular mechanism in plant organelles. Genes (Basel) 8:5
4. Cahoon AB, Nauss JA, Stanley CD, Qureshi A (2017) Deep transcriptome sequencing of two green algae, Chara vulgaris and Chlamydomonas reinhardtii, provides no evidence of organellar RNA editing. Genes (Basel) 8:80
5. Kotera E, Tasaka M, Shikanai T (2005) A pentatricopeptide repeat protein is essential for RNA editing in chloroplasts. Nature 433:326–330
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1. Gene expression and physiological roles of post-transcriptional editing in plant organellar systems;Theoretical and Experimental Plant Physiology;2024-04-22
2. Conservation of the moss RNA editing factor PPR78 despite the loss of its known cytidine-to-uridine editing sites is explained by a hidden extra target;The Plant Cell;2023-11-24
3. Beyond a PPR-RNA recognition code: Many aspects matter for the multi-targeting properties of RNA editing factor PPR56;PLOS Genetics;2023-08-21
4. DYW cytidine deaminase domains have a long‐range impact on RNA recognition by the PPR array of chimeric plant C‐to‐U RNA editing factors and strongly affect target selection;The Plant Journal;2023-08-11
5. Beyond a PPR-RNA recognition code: Many aspects matter for the multi-targeting properties of RNA editing factor PPR56;2023-04-05
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