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Science (New York, N.Y.)|January 3, 2009
Cytosolic viral sensor RIG-I is a 5'-triphosphate-dependent translocase on double-stranded RNASua Myong, Sheng Cui, Peter V Cornish, et al.Science Signaling|January 9, 2014
The ubiquitin-specific protease USP15 promotes RIG-I-mediated antiviral signaling by deubiquitylating TRIM25Eva-Katharina Pauli, Ying Kai Chan, Meredith E Davis, et al.Journal of Virology|September 29, 2006
Growth transformation of human T cells by herpesvirus saimiri requires multiple Tip-Lck interaction motifsElke Heck, Ute Friedrich, Michaela U Gack, et al.Nature Immunology|November 29, 2017
Viral unmasking of cellular 5S rRNA pseudogene transcripts induces RIG-I-mediated immunityJessica J Chiang, Konstantin M J Sparrer, Michiel van Gent, et al.Methods in Molecular Biology (Clifton, N.J.)|October 21, 2016
Evaluation of Innate Immune Gene Expression Following HDAC Inhibitor Treatment by High Throughput qPCR and PhosFlow CytometryDavid Olagnier, Cindy Chiang, John HiscottBiological Chemistry|June 13, 2015
The intersection between viral oncolysis, drug resistance, and autophagyVladimir Beljanski, Cindy Chiang, John HiscottAging Cell|January 13, 2022
Aging-related cell type-specific pathophysiologic immune responses that exacerbate disease severity in aged COVID-19 patientsYuan Hou, Yadi Zhou, Lara Jehi, et al.Plos Pathogens|December 5, 2012
Species-specific inhibition of RIG-I ubiquitination and IFN induction by the influenza A virus NS1 proteinRicardo Rajsbaum, Randy A Albrecht, May K Wang, et al.Autophagy|November 8, 2023
CSNK2 suppresses autophagy by activating FLN-NHL-containing TRIM proteinsHelene Hoenigsperger, Lennart Koepke, Dhiraj Acharya, et al.The Biochemical Journal|September 11, 2013
Crystal structure of the TRIM25 B30.2 (PRYSPRY) domain: a key component of antiviral signallingAkshay A D'Cruz, Nadia J Kershaw, Jessica J Chiang, et al.Pageof 12