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Annual Review of Microbiology|September 28, 2007
Aggresomes and pericentriolar sites of virus assembly: cellular defense or viral design?Thomas WilemanScience (New York, N.Y.)|May 13, 2006
Aggresomes and autophagy generate sites for virus replicationThomas WilemanThe Journal of General Virology|February 22, 2005
African swine fever virus infection disrupts centrosome assembly and functionNolwenn Jouvenet, Thomas WilemanJournal of Virology|March 16, 2004
The subcellular distribution of multigene family 110 proteins of African swine fever virus is determined by differences in C-terminal KDEL endoplasmic reticulum retention motifsChristopher Netherton, Isabelle Rouiller, Thomas WilemanJournal of Virology|January 15, 2003
Membrane association facilitates the correct processing of pp220 during production of the major matrix proteins of African swine fever virusColin M Heath, Miriam Windsor, Thomas WilemanJournal of Virology|July 16, 2004
Transport of African swine fever virus from assembly sites to the plasma membrane is dependent on microtubules and conventional kinesinNolwenn Jouvenet, Paul Monaghan, Michael Way, et al.The Journal of General Virology|March 5, 2025
Dynamic regulation of autophagy during Semliki Forest virus infection of neuroblastoma cellsRobert J Stott-Marshall, Craig McBeth, Thomas WilemanAdvances in Virus Research|September 4, 2007
A guide to viral inclusions, membrane rearrangements, factories, and viroplasm produced during virus replicationChristopher Netherton, Katy Moffat, Elizabeth Brooks, et al.Journal of Virology|September 16, 2004
African swine fever virus inhibits induction of the stress-induced proapoptotic transcription factor CHOP/GADD153Christopher L Netherton, James C Parsley, Thomas WilemanImmunology|May 12, 2005
Monoclonal antibodies that identify the CD3 molecules expressed specifically at the surface of porcine gammadelta-T cellsHuaizhi Yang, R Michael E Parkhouse, Thomas WilemanPageof 6