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Genes & Development|December 17, 2005
The Drosophila microRNA iab-4 causes a dominant homeotic transformation of halteres to wingsMatthew Ronshaugen, Frédéric Biemar, Jessica Piel, et al.Mechanisms of Development|September 3, 2002
Structure and expression patterns of Drosophila TULP and TUSP, members of the tubby-like gene familyMatthew Ronshaugen, Nadine McGinnis, Diane Inglis, et al.Biorxiv : the Preprint Server for Biology|August 30, 2023
SUMOylation of Bonus, the <i>Drosophila</i> homolog of Transcription Intermediary Factor 1, safeguards germline identity by recruiting repressive chromatin complexes to silence tissue-specific genesBaira Godneeva, Maria Ninova, Katalin Fejes Tóth, et al.Nucleic Acids Research|December 31, 2005
miRBase: microRNA sequences, targets and gene nomenclatureSam Griffiths-Jones, Russell J Grocock, Stijn van Dongen, et al.Nucleic Acids Research|December 21, 2004
Rfam: annotating non-coding RNAs in complete genomesSam Griffiths-Jones, Simon Moxon, Mhairi Marshall, et al.International Journal of Molecular Sciences|December 1, 2020
Regulatory RNAs: A Universal Language for Inter-Domain CommunicationEmma Layton, Anna-Marie Fairhurst, Sam Griffiths-Jones, et al.Evolution & Development|May 4, 2010
Silencing of an abdominal Hox gene during early development is correlated with limb development in a crustacean trunkCheryl C Hsia, Adam C Paré, Michael Hannon, et al.The Journal of Allergy and Clinical Immunology|January 8, 2005
Structural relatedness of plant food allergens with specific reference to cross-reactive allergens: an in silico analysisJohn A Jenkins, Sam Griffiths-Jones, Peter R Shewry, et al.Plos One|June 15, 2023
A systematic review of non-coding RNA genes with differential expression profiles associated with autism spectrum disordersJon Stott, Thomas Wright, Jannah Holmes, et al.Trends in Genetics : TIG|June 17, 2020
Quo vadis microRNAs?Bastian Fromm, Andreas Keller, Xiaozeng Yang, et al.Pageof 13