54 research outputs found

    Complete suppression of viral gene expression is associated with the onset and progression of lymphoid malignancy: observations in Bovine Leukemia Virus-infected sheep

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    BACKGROUND: During malignant progression, tumor cells need to acquire novel characteristics that lead to uncontrolled growth and reduced immunogenicity. In the Bovine Leukemia Virus-induced ovine leukemia model, silencing of viral gene expression has been proposed as a mechanism leading to immune evasion. However, whether proviral expression in tumors is completely suppressed in vivo was not conclusively demonstrated. Therefore, we studied viral expression in two selected experimentally-infected sheep, the virus or the disease of which had features that made it possible to distinguish tumor cells from their nontransformed counterparts. RESULTS: In the first animal, we observed the emergence of a genetically modified provirus simultaneously with leukemia onset. We found a Tax-mutated (TaxK303) replication-deficient provirus in the malignant B-cell clone while functional provirus (TaxE303) had been consistently monitored over the 17-month aleukemic period. In the second case, both non-transformed and transformed BLV-infected cells were present at the same time, but at distinct sites. While there was potentially-active provirus in the non-leukemic blood B-cell population, as demonstrated by ex-vivo culture and injection into naïve sheep, virus expression was completely suppressed in the malignant B-cells isolated from the lymphoid tumors despite the absence of genetic alterations in the proviral genome. These observations suggest that silencing of viral genes, including the oncoprotein Tax, is associated with tumor onset. CONCLUSION: Our findings suggest that silencing is critical for tumor progression and identify two distinct mechanisms-genetic and epigenetic-involved in the complete suppression of virus and Tax expression. We demonstrate that, in contrast to systems that require sustained oncogene expression, the major viral transforming protein Tax can be turned-off without reversing the transformed phenotype. We propose that suppression of viral gene expression is a contributory factor in the impairment of immune surveillance and the uncontrolled proliferation of the BLV-infected tumor cell.Journal ArticleResearch Support, Non-U.S. Gov'tinfo:eu-repo/semantics/publishe

    Progressive loss of CD3 expression after HTLV-I infection results from chromatin remodeling affecting all the CD3 genes and persists despite early viral genes silencing

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    BACKGROUND: HTLV-I infected CD4+ T-cells lines usually progress towards a CD3- or CD3low phenotype. In this paper, we studied expression, kinetics, chromatin remodeling of the CD3 gene at different time-points post HTLV-I infection. RESULTS: The onset of this phenomenon coincided with a decrease of CD3gamma followed by the subsequent progressive reduction in CD3delta, then CD3epsilon and CD3zeta mRNA. Transient transfection experiments showed that the CD3gamma promoter was still active in CD3- HTLV-I infected cells demonstrating that adequate amounts of the required transcription factors were available. We next looked at whether epigenetic mechanisms could be responsible for this progressive decrease in CD3 expression using DNase I hypersensitivity (DHS) experiments examining the CD3gamma and CD3delta promoters and the CD3delta enhancer. In uninfected and cells immediately post-infection all three DHS sites were open, then the CD3gamma promoter became non accessible, and this was followed by a sequential closure of all the DHS sites corresponding to all three transcriptional control regions. Furthermore, a continuous decrease of in vivo bound transcription initiation factors to the CD3gamma promoter was observed after silencing of the viral genome. Coincidently, cells with a lower expression of CD3 grew more rapidly. CONCLUSION: We conclude that HTLV-I infection initiates a process leading to a complete loss of CD3 membrane expression by an epigenetic mechanism which continues along time, despite an early silencing of the viral genome. Whether CD3 progressive loss is an epiphenomenon or a causal event in the process of eventual malignant transformation remains to be investigated.Journal ArticleResearch Support, Non-U.S. Gov'tinfo:eu-repo/semantics/publishe

    Chromatin disruption in the promoter of Bovine Leukemia Virus during transcriptional activation

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    Bovine leukemia virus expression relies on its chromatin organization after integration into the host cell genome. Proviral latency, which results from transcriptional repression in vivo, represents a viral strategy to escape the host immune system and likely allows for tumor progression. Here, we discriminated two types of latency: an easily reactivable latent state of the YR2 provirus and a ‘locked’ latent state of the L267 provirus. The defective YR2 provirus was characterized by the presence of nuclease hypersensitive sites at the U3/R junction and in the R/U5 region of the 5′-long terminal repeat (5′-LTR), whereas the L267 provirus displayed a closed chromatin configuration at the U3/R junction. Reactivation of viral expression in YR2 cells by the phorbol 12-myristate 13-acetate (PMA) plus ionomycin combination was accompanied by a rapid but transient chromatin remodeling in the 5′-LTR, leading to an increased PU.1 and USF-1/USF-2 recruitment in vivo sustained by PMA/ionomycin-mediated USF phosphorylation. In contrast, viral expression was not reactivated by PMA/ionomycin in L267 cells, because the 5′-LTR U3/R region remained inaccessible to nucleases and hypermethylated at CpG dinucleotides. Remarkably, we elucidated the BLV 5′-LTR chromatin organization in PBMCs isolated from BLV-infected cows, thereby depicting the virus hiding in vivo in its natural host

    A microRNA profile of human CD8(+) regulatory T cells and characterization of the effects of microRNAs on Treg cell-associated genes.

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    Recently, regulatory T (Treg) cells have gained interest in the fields of immunopathology, transplantation and oncoimmunology. Here, we investigated the microRNA expression profile of human natural CD8(+)CD25(+) Treg cells and the impact of microRNAs on molecules associated with immune regulation. We purified human natural CD8(+) Treg cells and assessed the expression of FOXP3 and CTLA-4 by flow cytometry. We have also tested the ex vivo suppressive capacity of these cells in mixed leukocyte reactions. Using TaqMan low-density arrays and microRNA qPCR for validation, we could identify a microRNA 'signature' for CD8(+)CD25(+)FOXP3(+)CTLA-4(+) natural Treg cells. We used the 'TargetScan' and 'miRBase' bioinformatics programs to identify potential target sites for these microRNAs in the 3'-UTR of important Treg cell-associated genes. The human CD8(+)CD25(+) natural Treg cell microRNA signature includes 10 differentially expressed microRNAs. We demonstrated an impact of this signature on Treg cell biology by showing specific regulation of FOXP3, CTLA-4 and GARP gene expression by microRNA using site-directed mutagenesis and a dual-luciferase reporter assay. Furthermore, we used microRNA transduction experiments to demonstrate that these microRNAs impacted their target genes in human primary Treg cells ex vivo. We are examining the biological relevance of this 'signature' by studying its impact on other important Treg cell-associated genes. These efforts could result in a better understanding of the regulation of Treg cell function and might reveal new targets for immunotherapy in immune disorders and cancer

    Mécanismes moléculaires impliqués dans la latence virale associée à la phase tumorale de la leucémie induite par le virus de la leucémie bovine

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    Parmi les rétrovirus tumorigènes, les rétrovirus appelés « complexes » dont font partie HTLV-1 chez l’homme et BLV chez le mouton, sont responsables de leucémies lymphoïdes chroniques caractérisées par des pathogenèses similaires. Bien que la contribution essentielle de la protéine Tax dans la leucémogenèse soit bien établie pour ces deux virus, il existe toujours une contreverse quant à l’expression des protéines virales -dont l’oncoprotéine Tax- dans les cellules transformées. Dans le cas de HTLV-1 et BLV, le virus est latent. Une hypothèse attrayante suggère que l’extinction complète du provirus accompagnée du blocage transcriptionnel de l’expression de Tax dans la cellule leucémique serait un élément indispensable au développement de la tumeur en réduisant son immunogénicité. Le silencing viral permettrait à la cellule infectée d’échapper à la reconnaissance par le système immunitaire de l’hôte. Dans la première partie de notre travail, nous avons pu montrer, grâce à l’observation et le suivi de deux moutons infectés par BLV, que l’extinction virale était associée au développement tumoral. Alors que la phase asymptomatique est caractérisée par l’existence de différents clones cellulaires infectés et exprimant le virus, la phase tumorale est caractérisée par l’existence d’un seul clone cellulaire dans lequel l’expression virale est éteinte. Dans le cas du mouton S2531, nous avons mis en évidence que le silencing observé dans la phase tumorale est d’origine génétique. L’extinction de l’expression virale et la domination du clone muté au niveau de la protéine Tax (K303) sont associées à l’émergence de la leucémie et constituent une caractéristique de la phase tumorale. Le deuxième mouton étudié, S267, est caractérisé par la présence de cellules infectées non transformées et transformées au même moment. Par ailleurs, le mouton S267 est caractérisé par une absence de mutations ou délétions au niveau du provirus intégré dans les cellules tumorales. Dans la deuxième partie de notre travail, nous avons pu, grâce à l’établissement de la lignée L267 dans laquelle le silencing viral n’est pas lié à une défection dans la structure génomique du provirus, élucider les mécanismes épigénétiques responsables du silencing. Nous montrons que ce provirus silencieux peut être réactivé in vitro 1) lorsque la protéine Tax sauvage est introduite par transfert rétroviral, 2) après traitement des cellules par la trichostatine A (TSA), un inhibiteur des histones désacétylases, 3) par traitement des cellules à la 5’azacytidine, un agent inhibiteur de DNA méthyltransférases. La réactivation du provirus silencieux lui confère la capacité d’infecter des moutons sains, suggérant que le provirus est complet et exempt de mutation qui pourrait altérer son fonctionnement. Les complexes de désacétylation des histones msin3A et HDAC-1 jouent un rôle important dans l’établissement du silencing viral via la condensation de la chromatine, et ce changement de la structure chromatinienne est lié a un ensemble de modifications ciblant les acides aminés des queues N-terminales des histones H3 et H4 établissant ainsi un code histone pour l’extinction et l’expression du provirus. Enfin, l’étude comparative des profils d’expression génique de cellules B tumorales dans lesquelles le provirus BLV est soit silencieux, soit ré-activé suite à l’expression exogène de Tax a montré que les mécanismes épigénétiques de silencing se superposent même dans le modèle génétique de silencing. De plus le rétablissement de l’expression virale par Tax est associé à une élimination des complexes de désacétylation des histones au niveau du promoteur viral.Nos résultats ouvrent le champ vers l’utilisation de modèle de leucémie ovine dans des essais thérapeutiques basés sur la combinaison du traitement par des inhibiteurs des HDACs et des DNMTs et une immunothérapie ciblant des antigènes tumoraux d’origine virale ou cellulaire. De telles expériences in vivo constitueront un modèle utile pour le traitement l’ATLL et de pathologies prolifératives touchant les cellules B chez l’homme.Doctorat en sciences biomédicalesinfo:eu-repo/semantics/nonPublishe

    The Medicinal Potential of Mesenchymal Stem/Stromal Cells in Immuno- and Cancer Therapy

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    Cancer is a highly lethal disease that causes millions of deaths worldwide, thus representing a major public health challenge [.]info:eu-repo/semantics/publishe

    Fundamental and Applied Advances in Stem Cell Therapeutic Research

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    We are pleased to present this Special Issue of Cells, entitled ‘Feature Papers in Stem Cells’ [...

    Suppression of Viral Gene Expression in Bovine Leukemia Virus-Associated B-Cell Malignancy: Interplay of Epigenetic Modifications Leading to Chromatin with a Repressive Histone Code▿

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    Ovine leukemia/lymphoma resulting from bovine leukemia virus infection of sheep offers a large animal model for studying mechanisms underlying leukemogenesis. Silencing of viral information including Tax, the major contributor to the oncogenic potential of the virus, is critical if not mandatory for tumor progression. In this study, we have identified epigenetic mechanisms that govern the complete suppression of viral expression, using a lymphoma-derived B-cell clone carrying a silent provirus. Silencing was not relieved by injection of the malignant B cells into sheep. However, exogenous expression of Tax or treatment with either the DNA methyltransferase inhibitor 5′azacytidine or the histone deacetylase (HDAC) inhibitor trichostatin A rescued viral expression, as demonstrated by in vivo infectivity trials. Comparing silent and reactivated provirus, we found mechanistic connections between chromatin conformation and tumor-associated transcriptional repression. Silencing is associated with DNA methylation and decreased accessibility of promoter sequences. HDAC1 and the transcriptional corepressor mSin3A are associated with the inactive but not the reactivated promoter. Silencing correlates with a repressed chromatin structure marked by histone H3 and H4 hypoacetylation, a loss of methylation at H3 lysine 4, and an increase of H3 lysine 9 methylation. These observations point to the critical role of epigenetic mechanisms in tumor-specific virus/oncogene silencing, a potential strategy to evade immune response and favor the propagation of the transformed cell

    Mesenchymal Stromal Cell-Based Therapy: New Perspectives and Challenges

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    Stem cells have been the focus of intense research opening up new possibilities for the treatment of various diseases. Mesenchymal stromal cells (MSCs) are multipotent cells with relevant immunomodulatory properties and are thus considered as a promising new strategy for immune disease management. To enhance their efficiency, several issues related to both MSC biology and functions are needed to be identified and, most importantly, well clarified. The sources from which MSCs are isolated are diverse and might affect their properties. Both clinicians and scientists need to handle a phenotypic-characterized population of MSCs, particularly regarding their immunological profile. Moreover, it is now recognized that the tissue-reparative effects of MSCs are based on their immunomodulatory functions that are activated following a priming/licensing step. Thus, finding the best ways to pre-conditionate MSCs before their injection will strengthen their activity potential. Finally, soluble elements derived from MSC-secretome, including extracellular vesicles (EVs), have been proposed as a cell-free alternative tool for therapeutic medicine. Collectively, these features have to be considered and developed to ensure the efficiency and safety of MSC-based therapy. By participating to this Special Issue “Mesenchymal Stem/Stromal Cells in Immunity and Disease”, your valuable contribution will certainly enrich the content and discussion related to the thematic of MSCs.info:eu-repo/semantics/publishe

    Immunological modulation following bone marrow-derived mesenchymal stromal cells and Th17 lymphocyte co-cultures

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    Objective and design: The objective of the study is to uncover the influence of human bone marrow-derived mesenchymal stem cells (BM-MSCs) on the generation of Th17 lymphocytes in co-cultures of both BM-MSCs and T cells. Materials and methods: BM-MSCs, characterized according to the international society for cellular therapy (ISCT) criteria, were co-cultured with T cells isolated from peripheral blood. The expression levels of IL-17 receptor, RORγt and IL-23 receptor were evaluated using flow cytometry. The levels of cytokines involved in Th17 immunomodulation were measured using multiplex assay. Treatment: Inflammatory primed and non-primed BM-MSCs were co-cultured with either activated or non-activated T cells either at (1/80) and (1/5) ratio respectively. Results: MSC/T-cell ratio and inflammation significantly influenced the effect of BM-MSCs on the generation of Th17 lymphocytes. Cocultures of either primed or non-primed BM-MSCs with activated T cells significantly induced IL-17A-expressing lymphocytes. Interestingly, the expression of the transcription factor RORγt was significantly increased when compared to levels in activated T cells. Finally, both cell ratio and priming of BM-MSCs with cytokines substantially influenced the cytokine profile of BM-MSCs and T cells. Conclusion: Our findings suggest that BM-MSCs significantly modulate the Th17 lymphocyte pathway in a complex manner.SCOPUS: ar.jinfo:eu-repo/semantics/publishe
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