HIV Biology and Variability
Publicaciones destacadas
López, D., A. Barriga, E. Lorente, and C. Mir. 2019. Immunoproteomic Lessons for Human Respiratory Syncytial Virus Vaccine Design. J.Clin.Med. 8.
López, D., A. Barriga, E. Lorente, and C. Mir. 2019. Immunoproteomic Lessons for Human Respiratory Syncytial Virus Vaccine Design. J.Clin.Med. 8.
PUBMED DOILorente, E., A. Barriga, E. Barnea, C. Palomo, J. Garcia-Arriaza, C. Mir, M. Esteban, A. Admon, and D. López. 2019. Immunoproteomic analysis of a Chikungunya poxvirus-based vaccine reveals high HLA class II immunoprevalence. PLoS.Negl.Trop.Dis. 13:e0007547.
Lorente, E., A. Barriga, E. Barnea, C. Palomo, J. Garcia-Arriaza, C. Mir, M. Esteban, A. Admon, and D. López. 2019. Immunoproteomic analysis of a Chikungunya poxvirus-based vaccine reveals high HLA class II immunoprevalence. PLoS.Negl.Trop.Dis. 13:e0007547.
PUBMED DOIComputational characterization of the peptidome in transporter associated with antigen processing (TAP)-deficient cells.
Martin-Galiano, A. J. and Lopez, D. (2019) Computational characterization of the peptidome in transporter associated with antigen processing (TAP)-deficient cells. PLoS.ONE. 14, e0210583.
PUBMED DOIProteomics analysis reveals that structural proteins of the virion core and involved in gene expression are the main source for HLA class II ligands in vaccinia virus-infected cells.
Lorente, E., Martin-Galiano, A. J., Barnea, E., Barriga, A., Palomo, C., Garcia-Arriaza, J., Mir, C., Lauzurica, P., Esteban, M., Admon, A., and Lopez, D. (2019) Proteomics analysis reveals that structural proteins of the virion core and involved in gene expression are the main source for HLA class II ligands in vaccinia virus-infected cells. J.Proteome.Res. 18(9):3512-3520
PUBMED DOIInformación adicional
The activities of the HIV viral and biology unit (UBVVIH) include research, service to the National Health System (NHS) and the administration of Justice and teaching. Its main lines of research are molecular epidemiology and HIV-1 phylogeny, in which the UBVVIH has carried out numerous national and international collaborations, focusing on the identification of viral genetic forms and the study of their correlations with epidemiological variables. Related lines are phylodynamics and phylogeography, which study the origin and dynamics of growth and spread of HIV-1 variants. Such studies can be used to better understand the evolution of the epidemic and to plan public health actions.
The UBVHIV also produces and characterises primary isolates and functional clones of the envelope of various genetic forms of HIV-1, which are deposited in repositories and used by numerous international groups. Other lines of research are described in the corresponding section. In terms of service to the NHS, the UBVVIH carries out antiretroviral resistance tests and prediction of tropism as a therapeutic guide in HIV-1 infected patients. As for its collaboration with the Justice Administration, the UBVVIH carries out expert opinions through phylogenetic studies of sequences for legal cases of possible HIV transmissions.