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Biochemical Society Transactions|July 3, 2024
TDP-43 in nuclear condensates: where, how, and whyRuaridh Lang, Rachel E Hodgson, Tatyana A ShelkovnikovaMolecular Biology of the Cell|February 7, 2019
Cellular eIF2B subunit localization: implications for the integrated stress response and its control by small molecule drugsRachel E Hodgson, Beatriz A Varanda, Mark P Ashe, et al.Bioscience Reports|May 17, 2022
Regulation and function of elF2B in neurological and metabolic disordersFilipe M Hanson, Rachel E Hodgson, Madalena I Ribeiro de Oliveira, et al.The Journal of Biological Chemistry|December 18, 2020
Mutational analysis of the alpha subunit of eIF2B provides insights into the role of eIF2B bodies in translational control and VWM diseaseKarl Norris, Rachel E Hodgson, Tawni Dornelles, et al.Cell Reports|June 28, 2024
Stress-induced TDP-43 nuclear condensation causes splicing loss of function and STMN2 depletionWan-Ping Huang, Brittany C S Ellis, Rachel E Hodgson, et al.Iscience|October 11, 2024
C9orf72 poly-PR forms anisotropic condensates causative of nuclear TDP-43 pathologyRachel E Hodgson, Jessica A Rayment, Wan-Ping Huang, et al.Science Advances|July 23, 2025
M6A-dependent RNA condensation underlies FUS autoregulation and can be harnessed for ALS therapy developmentWan-Ping Huang, Vedanth Kumar, Karen Yap, et al.Brain : a Journal of Neurology|June 25, 2026
STMN2 protein depletion via translation deficits and stress granules in amyotrophic lateral sclerosisBrittany C S Ellis, Anna Sanchez Avila, Wan-Ping Huang, et al.Nature Cell Biology|March 19, 2026
Paraspeckle condensation is controlled via TDP-43 polymerization and linked to neuroprotectionRachel E Hodgson, Wan-Ping Huang, Ruaridh Lang, et al.Pageof 1