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Frontiers in Immunology|May 16, 2012
Macroautophagy Regulation during HIV-1 Infection of CD4+ T Cells and MacrophagesSophie Borel, Lucile Espert, Martine Biard-PiechaczykCellular Microbiology|July 3, 2015
The innate immune response in human tuberculosisThomas R Lerner, Sophie Borel, Maximiliano G GutierrezBiology of the Cell|December 23, 2011
HIV-1, ubiquitin and ubiquitin-like proteins: the dialectic interactions of a virus with a sophisticated network of post-translational modificationsMartine Biard-Piechaczyk, Sophie Borel, Lucile Espert, et al.Journal of Virology|October 24, 2014
Autophagy restricts HIV-1 infection by selectively degrading Tat in CD4+ T lymphocytesSophie Sagnier, Coralie F Daussy, Sophie Borel, et al.AIDS (London, England)|December 10, 2014
HIV-1 viral infectivity factor interacts with microtubule-associated protein light chain 3 and inhibits autophagySophie Borel, Véronique Robert-Hebmann, Jamal Alfaisal, et al.Retrovirology|September 21, 2011
Polarized expression of the membrane ASP protein derived from HIV-1 antisense transcription in T cellsIsabelle Clerc, Sylvain Laverdure, Cynthia Torresilla, et al.The Journal of Cell Biology|March 1, 2017
Mycobacterium tuberculosis replicates within necrotic human macrophagesThomas R Lerner, Sophie Borel, Daniel J Greenwood, et al.Retrovirology|June 25, 2015
The HDAC6/APOBEC3G complex regulates HIV-1 infectiveness by inducing Vif autophagic degradationMaría-Soledad Valera, Laura de Armas-Rillo, Jonathan Barroso-González, et al.The Journal of Clinical Investigation|February 23, 2016
Lymphatic endothelial cells are a replicative niche for Mycobacterium tuberculosisThomas R Lerner, Cristiane de Souza Carvalho-Wodarz, Urska Repnik, et al.Plos Pathogens|December 17, 2011
IRGM is a common target of RNA viruses that subvert the autophagy networkIsabel Pombo Grégoire, Clémence Richetta, Laurène Meyniel-Schicklin, et al.Pageof 1