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Methods in Enzymology|September 14, 2021
CLIP-Seq to identify targets and interactions of RNA binding proteins and RNA modifying enzymesJulian Stoute, Kathy Fange LiuMethods in Enzymology|October 14, 2019
RNA modifications and the link to human diseaseAmber Yanas, Kathy Fange LiuGenes & Development|November 8, 2022
TRIBE-STAMP reveals new insights into the functions of RNA binding proteinsMichael C Owens, Kathy Fange LiuThe Journal of Biological Chemistry|July 4, 2020
Structural and catalytic roles of the human 18S rRNA methyltransferases DIMT1 in ribosome assembly and translationHui Shen, Julian Stoute, Kathy Fange LiuMolecular Cell|September 4, 2021
Recent technical advances in the study of nucleic acid modificationsMichael C Owens, Celia Zhang, Kathy Fange LiuNature Structural & Molecular Biology|August 9, 2024
Sex chromosome-encoded protein homologs: current progress and open questionsMichael C Owens, Amber Yanas, Kathy Fange LiuThe Biochemical Journal|April 28, 2019
The chemical diversity of RNA modificationsR Jordan Ontiveros, Julian Stoute, Kathy Fange LiuGenes & Development|July 24, 2024
Comparing the roles of sex chromosome-encoded protein homologs in gene regulationEllen Lavorando, Michael C Owens, Kathy Fange LiuMolecular Psychiatry|May 3, 2023
Coordination of RNA modifications in the brain and beyondAnthony Yulin Chen, Michael C Owens, Kathy Fange LiuThe Journal of Biological Chemistry|September 2, 2021
Human DIMT1 generates N26,6A-dimethylation-containing small RNAsHui Shen, Yulia Gonskikh, Julian Stoute, et al.Pageof 4