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Proceedings of the National Academy of Sciences of the United States of America|June 15, 2016
OX40L blockade protects against inflammation-driven fibrosisMuriel Elhai, Jérôme Avouac, Anna Maria Hoffmann-Vold, et al.Nature Immunology|November 23, 2021
Disrupting Roquin-1 interaction with Regnase-1 induces autoimmunity and enhances antitumor responsesGesine Behrens, Stephanie L Edelmann, Timsse Raj, et al.Immunity|December 17, 2017
Roquin Suppresses the PI3K-mTOR Signaling Pathway to Inhibit T Helper Cell Differentiation and Conversion of Treg to Tfr CellsKatharina Essig, Desheng Hu, Joao C Guimaraes, et al.Frontiers in Immunology|November 6, 2020
Elevated Exhaustion Levels of NK and CD8+ T Cells as Indicators for Progression and Prognosis of COVID-19 DiseaseMingyue Li, Weina Guo, Yalan Dong, et al.Nature Communications|February 21, 2015
Roquin binds microRNA-146a and Argonaute2 to regulate microRNA homeostasisMonika Srivastava, Guowen Duan, Nadia J Kershaw, et al.Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|August 21, 2024
Aloperine Suppresses Cancer Progression by Interacting with VPS4A to Inhibit Autophagosome-lysosome Fusion in NSCLCWeina Guo, Haifeng Zhou, Jingbo Wang, et al.The Journal of Experimental Medicine|May 26, 2019
Immune homeostasis and regulation of the interferon pathway require myeloid-derived Regnase-3Matthias von Gamm, Annalisa Schaub, Alisha N Jones, et al.Plos Pathogens|February 20, 2010
Six RNA viruses and forty-one hosts: viral small RNAs and modulation of small RNA repertoires in vertebrate and invertebrate systemsPoornima Parameswaran, Ella Sklan, Courtney Wilkins, et al.Nature Immunology|October 6, 2014
Cleavage of roquin and regnase-1 by the paracaspase MALT1 releases their cooperatively repressed targets to promote T(H)17 differentiationKatharina M Jeltsch, Desheng Hu, Sven Brenner, et al.Science Immunology|March 1, 2024
TGF-β specifies TFH versus TH17 cell fates in murine CD4+ T cells through c-MafYinshui Chang, Luisa Bach, Marko Hasiuk, et al.Pageof 8