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Current HIV Research|March 11, 2014
HIV-1 Rev multimerization: mechanism and insightsThomas Vercruysse, Dirk DaelemansThe Journal of Biological Chemistry|April 22, 2010
An intrabody based on a llama single-domain antibody targeting the N-terminal alpha-helical multimerization domain of HIV-1 rev prevents viral productionThomas Vercruysse, Els Pardon, Els Vanstreels, et al.Bio-Protocol|March 4, 2021
Quantitative Nucleocytoplasmic Transport Assays in Cellular Models of NeurodegenerationJoni Vanneste, Thomas Vercruysse, Philip Van Damme, et al.International Journal of Molecular Sciences|February 15, 2022
The T850D Phosphomimetic Mutation in the Androgen Receptor Ligand Binding Domain Enhances Recruitment at Activation Function 2Christine Helsen, Tien Nguyen, Thomas Vercruysse, et al.Biomedicines|May 28, 2022
Cellular Stress Induces Nucleocytoplasmic Transport Deficits Independent of Stress GranulesJoni Vanneste, Thomas Vercruysse, Steven Boeynaems, et al.Antiviral Research|December 3, 2014
A stably expressed llama single-domain intrabody targeting Rev displays broad-spectrum anti-HIV activityEline Boons, Guangdi Li, Els Vanstreels, et al.Scientific Reports|November 2, 2019
C9orf72-generated poly-GR and poly-PR do not directly interfere with nucleocytoplasmic transportJoni Vanneste, Thomas Vercruysse, Steven Boeynaems, et al.Plos One|April 9, 2013
Mapping the binding interface between an HIV-1 inhibiting intrabody and the viral protein RevThomas Vercruysse, Eline Boons, Tom Venken, et al.Chemistry & Biology|January 13, 2015
Identifying drug-target selectivity of small-molecule CRM1/XPO1 inhibitors by CRISPR/Cas9 genome editingJasper E Neggers, Thomas Vercruysse, Maarten Jacquemyn, et al.RNA Biology|March 2, 2011
Measuring cooperative Rev protein-protein interactions on Rev responsive RNA by fluorescence resonance energy transferThomas Vercruysse, Sonalika Pawar, Wim De Borggraeve, et al.Pageof 19