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Methods in Molecular Biology (Clifton, N.J.)|January 5, 2022
Jurkat-Derived (J-Lat, J1.1, and Jurkat E4) and CEM-Derived T Cell Lines (8E5 and ACH-2) as Models of Reversible Proviral LatencyAnthony Rodari, Guido Poli, Carine Van LintViruses|December 8, 2020
Depicting HIV-1 Transcriptional Mechanisms: A Summary of What We KnowAntoine Dutilleul, Anthony Rodari, Carine Van LintAnnual Review of Virology|September 29, 2021
The Current Status of Latency Reversing Agents for HIV-1 RemissionAnthony Rodari, Gilles Darcis, Carine M Van LintSeminars in Immunology|May 11, 2021
Shocking HIV-1 with immunomodulatory latency reversing agentsAnna Kula-Pacurar, Anthony Rodari, Gilles Darcis, et al.Scientific Reports|August 23, 2016
Characterization of new RNA polymerase III and RNA polymerase II transcriptional promoters in the Bovine Leukemia Virus genomeBenoit Van Driessche, Anthony Rodari, Nadège Delacourt, et al.Scientific Reports|March 4, 2017
Repression of Human T-lymphotropic virus type 1 Long Terminal Repeat sense transcription by Sp1 recruitment to novel Sp1 binding sitesSylvain Fauquenoy, Gwenaëlle Robette, Anna Kula, et al.Scientific Reports|January 30, 2021
Inhibition of HIV-1 gene transcription by KAP1 in myeloid lineageAmina Ait-Ammar, Maxime Bellefroid, Fadoua Daouad, et al.Nucleic Acids Research|March 2, 2022
Role of the cellular factor CTCF in the regulation of bovine leukemia virus latency and three-dimensional chromatin organizationMaxime Bellefroid, Anthony Rodari, Mathilde Galais, et al.Development (Cambridge, England)|October 8, 2015
Prdm12 specifies V1 interneurons through cross-repressive interactions with Dbx1 and Nkx6 genes in XenopusAurore Thélie, Simon Desiderio, Julie Hanotel, et al.Pageof 1