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Nature|June 12, 2014
Inactivation of PI(3)K p110δ breaks regulatory T-cell-mediated immune tolerance to cancerKhaled Ali, Dalya R Soond, Roberto Pineiro, et al.Nature Communications|December 3, 2024
Epi-microRNA mediated metabolic reprogramming counteracts hypoxia to preserve affinity maturationRinako Nakagawa, Miriam Llorian, Sunita Varsani-Brown, et al.Biorxiv : the Preprint Server for Biology|August 23, 2023
Epi-microRNA mediated metabolic reprogramming ensures affinity maturationRinako Nakagawa, Miriam Llorian, Sunita Varsani-Brown, et al.Nature Immunology|July 13, 2010
Deletion of the RNA-binding proteins ZFP36L1 and ZFP36L2 leads to perturbed thymic development and T lymphoblastic leukemiaDaniel J Hodson, Michelle L Janas, Alison Galloway, et al.Cell Reports|April 22, 2023
ZFP36-mediated mRNA decay regulates metabolismAndrew C Cicchetto, Elsie C Jacobson, Hannah Sunshine, et al.Scientific Reports|November 17, 2022
Multiomics analysis couples mRNA turnover and translational control of glutamine metabolism to the differentiation of the activated CD4+ T cellLouise S Matheson, Georg Petkau, Beatriz Sáenz-Narciso, et al.Science Immunology|October 31, 2025
RNA binding proteins control the G2-M checkpoint of the germinal center B cellFiamma Salerno, Alex J Whale, Louise S Matheson, et al.Ebiomedicine|June 27, 2018
Initial Identification of a Blood-Based Chromosome Conformation Signature for Aiding in the Diagnosis of Amyotrophic Lateral SclerosisMatthew Salter, Emily Corfield, Aroul Ramadass, et al.Nature Immunology|July 11, 2018
Translational repression of pre-formed cytokine-encoding mRNA prevents chronic activation of memory T cellsFiamma Salerno, Sander Engels, Maartje van den Biggelaar, et al.Science (New York, N.Y.)|April 23, 2016
RNA-binding proteins ZFP36L1 and ZFP36L2 promote cell quiescenceAlison Galloway, Alexander Saveliev, Sebastian Łukasiak, et al.Pageof 17