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Lafuente, E. M.

Publications and source records attributed to Lafuente, E. M..

2 recordsLinked to original sources

Treg cell epitopes from α-tubulin: discovery and immunomodulatory features

Regulatory T (Treg) cells are pivotal in maintaining self-tolerance and controlling immune responses. In this study, we investigated potential Treg cell epitopes in human -tubulin that were selected in silico for their promiscuous binding to class II human leukocyte antigens and full identity with antigens from enteric nematodes present in excretory-secretory products. We identified five Treg cell epitopes in -tubulin that were capable of stimulating and expanding IL-10 and TGF-{beta}-producing Foxp3+ Treg cells in peripheral blood mononuclear cells. We also proved that a peptide pool containing the identified Treg cell epitopes (TBL pool) suppressed the T cell responses elicited by different stimuli, including LPS, and class I and class II restricted T cell epitopes, as determined by intracellular cytokine staining assays. Similarly, this same peptide pool was able to suppress T cell responses in mixed lymphocyte reactions. Finally, we found that stimulation of naive CD4+ T cells with autologous monocyte-derived dendritic cells in the presence of the TBL pool promoted the differentiation of functional CD4+CD25highFoxP3+ T cells capable of suppressing the proliferation of CD3/CD28-activated T cells. -tubulin Treg cell epitopes could be useful for treating autoimmune and chronic inflammatory diseases by inducing Treg cells and, given the ubiquitous and copious expression of -tubulin, enable a general mechanism of immune homeostasis.

immunology↗

HIV-1 protein coding sequences are present in relevant bacteria

Human Immunodeficiency Virus (HIV) is a retrovirus that attacks the immune system, causing acquired immunodeficiency syndrome (AIDS). Early diagnosis and treatment of HIV infected individuals are considered key to reduce HIV transmission and developing AIDS. Therefore, HIV diagnostics play an important role in the battle against AIDS. HIV tests are regarded as reliable and very specific. However, false-positive results are known to occur, usually caused by infections with unrelated pathogens leading to cross-reactive antibodies. In this work, we found through TBLASTN searches that the genome of several bacterial species, most frequently Klebsiella pneumoniae and Escherichia coli, contain segments matching HIV-1 proteins, including p24 and other proteins relevant for HIV testing, with a high degree of similarity (sequence identity > 95 %). The presence of HIV-1 in these bacteria of the human microbiota does not appear to be an artifact, since HIV-1 proteins were detected in different isolates of the same species. The proteome of other common viruses, particularly Influenza A virus and Hepatitis B virus, was also detected in bacterial genomes, but to a much lesser extent. Overall, our findings support that some bacteria can acquire HIV-1 genetic material and could interfere with HIV testing, causing false-positives.

microbiology↗