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Nature Communications|August 22, 2018
The structure of the ubiquitin-like modifier FAT10 reveals an alternative targeting mechanism for proteasomal degradationAnnette Aichem, Samira Anders, Nicola Catone, et al.Nature Communications|November 4, 2018
Author Correction: The structure of the ubiquitin-like modifier FAT10 reveals an alternative targeting mechanism for proteasomal degradationAnnette Aichem, Samira Anders, Nicola Catone, et al.Scientific Reports|March 22, 2023
Novel intranasal vaccine targeting SARS-CoV-2 receptor binding domain to mucosal microfold cells and adjuvanted with TLR3 agonist Riboxxim™ elicits strong antibody and T-cell responses in miceDennis Horvath, Nigel Temperton, Martin Mayora-Neto, et al.Trauma Surgery & Acute Care Open|November 1, 2021
Neuropathic agents in the management of pruritus in burn injuries: a systematic review and meta-analysisChristopher McGovern, Tara Quasim, Kathryn Puxty, et al.Journal of Immunology (Baltimore, Md. : 1950)|November 11, 2003
Immunodominance of an antiviral cytotoxic T cell response is shaped by the kinetics of viral protein expressionHans Christian Probst, Kathrin Tschannen, Awen Gallimore, et al.Nature Immunology|July 28, 2015
The ubiquitin-specific protease USP8 is critical for the development and homeostasis of T cellsAlmut Dufner, Agnes Kisser, Sandra Niendorf, et al.Journal of Translational Medicine|February 26, 2025
Immunoproteasome subunits are novel signatures for predicting efficacy of immunotherapy in muscle invasive bladder cancerXinJian Wang, Hang You, Teng Zhang, et al.Nature Chemical Biology|May 17, 2016
A cascading activity-based probe sequentially targets E1-E2-E3 ubiquitin enzymesMonique P C Mulder, Katharina Witting, Ilana Berlin, et al.Nucleic Acids Research|October 4, 2016
Analyzing structure-function relationships of artificial and cancer-associated PARP1 variants by reconstituting TALEN-generated HeLa PARP1 knock-out cellsLisa Rank, Sebastian Veith, Eva C Gwosch, et al.Pageof 16