Chantal Desponds

Publications | Mémoires et thèses

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22 publications

2024 | 2022 | 2017 | 2016 | 2014 | 2013 | 2011 | 2010 | 2007 | 2000 | 1999 | 1997 | 1995 | 1993 |
 
NLRP1-dependent activation of Gasdermin D in neutrophils controls cutaneous leishmaniasis.
Goris M., Passelli K., Peyvandi S., Díaz-Varela M., Billion O., Prat-Luri B., Demarco B., Desponds C., Termote M., Iniguez E. et al., 2024/09. PLoS pathogens, 20 (9) pp. e1012527. Peer-reviewed.
 
Unique and redundant roles of mouse BCMA, TACI, BAFF, APRIL, and IL-6 in supporting antibody-producing cells in different tissues.
Eslami M., Schuepbach-Mallepell S., Diana D., Willen L., Kowalczyk-Quintas C., Desponds C., Peter B., Vigolo M., Renevey F., Donzé O. et al., 2024/07/16. Proceedings of the National Academy of Sciences of the United States of America, 121 (29) pp. e2404309121. Peer-reviewed.
Dissection of the macrophage response towards infection by the Leishmania-viral endosymbiont duo and dynamics of the type I interferon response.
Bekkar A., Isorce N., Snäkä T., Claudinot S., Desponds C., Kopelyanskiy D., Prével F., Reverte M., Xenarios I., Fasel N. et al., 2022. Frontiers in cellular and infection microbiology, 12 p. 941888. Peer-reviewed.
In and out: Leishmania metastasis by hijacking lymphatic system and migrating immune cells.
Jha B., Reverte M., Ronet C., Prevel F., Morgenthaler F.D., Desponds C., Lye L.F., Owens K.L., Scarpellino L., Dubey L.K. et al., 2022. Frontiers in cellular and infection microbiology, 12 p. 941860. Peer-reviewed.
Leishmania guyanensis suppressed inducible nitric oxide synthase provoked by its viral endosymbiont.
Kopelyanskiy D., Desponds C., Prevel F., Rossi M., Migliorini R., Snäkä T., Eren R.O., Claudinot S., Lye L.F., Pasparakis M. et al., 2022. Frontiers in cellular and infection microbiology, 12 p. 944819. Peer-reviewed.
Sex-Biased Control of Inflammation and Metabolism by a Mitochondrial Nod-Like Receptor.
Snäkä T., Bekkar A., Desponds C., Prével F., Claudinot S., Isorce N., Teixeira F., Grasset C., Xenarios I., Lopez-Mejia I.C. et al., 2022. Frontiers in immunology, 13 p. 882867. Peer-reviewed.
Type I interferons induced by endogenous or exogenous viral infections promote metastasis and relapse of leishmaniasis.
Rossi M., Castiglioni P., Hartley M.A., Eren R.O., Prével F., Desponds C., Utzschneider D.T., Zehn D., Cusi M.G., Kuhlmann F.M. et al., 2017/05/09. Proceedings of the National Academy of Sciences of the United States of America, 114 (19) pp. 4987-4992. Peer-reviewed.
Exacerbated Leishmaniasis Caused by a Viral Endosymbiont can be Prevented by Immunization with Its Viral Capsid.
Castiglioni P., Hartley M.A., Rossi M., Prevel F., Desponds C., Utzschneider D.T., Eren R.O., Zangger H., Brunner L., Collin N. et al., 2017. PLoS Neglected Tropical Diseases, 11 (1) pp. e0005240. Peer-reviewed.
Mammalian Innate Immune Response to a Leishmania-Resident RNA Virus Increases Macrophage Survival to Promote Parasite Persistence.
Eren R.O., Reverte M., Rossi M., Hartley M.A., Castiglioni P., Prevel F., Martin R., Desponds C., Lye L.F., Drexler S.K. et al., 2016/09/14. Cell host & microbe, 20 (3) pp. 318-328. Peer-reviewed.
Caspase-mediated cleavage of raptor participates in the inactivation of mTORC1 during cell death.
Martin R., Desponds C., Eren R.O., Quadroni M., Thome M., Fasel N., 2016. Cell Death Discovery, 2 p. 16024. Peer-reviewed.
Severe Cutaneous Leishmaniasis in a Human Immunodeficiency Virus Patient Coinfected with Leishmania braziliensis and Its Endosymbiotic Virus.
Parmentier L., Cusini A., Müller N., Zangger H., Hartley M.A., Desponds C., Castiglioni P., Dubach P., Ronet C., Beverley S.M. et al., 2016. American Journal of Tropical Medicine and Hygiene, 94 (4) pp. 840-843. Peer-reviewed.
Leishmania aethiopica field isolates bearing an endosymbiontic dsRNA virus induce pro-inflammatory cytokine response.
Zangger H., Hailu A., Desponds C., Lye L.F., Akopyants N.S., Dobson D.E., Ronet C., Ghalib H., Beverley S.M., Fasel N., 2014. PLoS Neglected Tropical Diseases, 8 (4) pp. e2836.
Detection of Leishmania RNA virus in Leishmania parasites.
Zangger H., Ronet C., Desponds C., Kuhlmann F.M., Robinson J., Hartley M.A., Prevel F., Castiglioni P., Pratlong F., Bastien P. et al., 2013. PLoS Neglected Tropical Diseases, 7 (1) pp. e2006.
Processing of metacaspase into a cytoplasmic catalytic domain mediating cell death in Leishmania major.
Zalila H., González I.J., El-Fadili A.K., Delgado M.B., Desponds C., Schaff C., Fasel N., 2011. Molecular Microbiology, 79 (1) pp. 222-239.
Cathepsin B-like and cell death in the unicellular human pathogen Leishmania.
El-Fadili A.K., Zangger H., Desponds C., Gonzalez I.J., Zalila H., Schaff C., Ives A., Masina S., Mottram J.C., Fasel N., 2010. Cell Death and Disease, 1 (9) pp. e71.
 
Leishmania major metacaspase can replace yeast metacaspase in programmed cell death and has arginine-specific cysteine peptidase activity.
González I.J., Desponds C., Schaff C., Mottram J.C., Fasel N., 2007. International Journal for Parasitology, 37 (2) pp. 161-172.
 
Expression and one-step purification of Plasmodium proteins in dictyostelium.
van Bemmelen M.X., Beghdadi-Rais C., Desponds C., Vargas E., Herrera S., Reymond C.D., Fasel N., 2000. Molecular and Biochemical Parasitology, 111 (2) pp. 377-390.
 
Leishmania major: histone H1 gene expression from the sw3 locus.
Belli S., Formenton A., Noll T., Ivens A., Jacquet R., Desponds C., Hofer D., Fasel N., 1999. Experimental Parasitology, 91 (2) pp. 151-160.
 
Histone H1 expression varies during the Leishmania major life cycle.
Noll T.M., Desponds C., Belli S.I., Glaser T.A., Fasel N.J., 1997. Molecular and Biochemical Parasitology, 84 (2) pp. 215-227.
 
Anchoring of an immunogenic Plasmodium falciparum circumsporozoite protein on the surface of Dictyostelium discoideum.
Reymond C.D., Beghdadi-Rais C., Roggero M., Duarte E.A., Desponds C., Bernard M., Groux D., Matile H., Bron C., Corradin G. et al., 1995. Journal of Biological Chemistry, 270 (21) pp. 12941-12947.
 
Fatty acids regulate Thy-1 antigen mRNA stability in T lymphocyte precursors.
Déglon N., Wilson A., Desponds C., Laurent P., Bron C., Fasel N., 1995. European Journal of Biochemistry, 231 (3) pp. 687-696.
 
Structures of glycosylphosphatidylinositol membrane anchors from Saccharomyces cerevisiae.
Fankhauser C., Homans S.W., Thomas-Oates J.E., McConville M.J., Desponds C., Conzelmann A., Ferguson M.A., 1993/12. Journal of Biological Chemistry, 268 (35) pp. 26365-26374. Peer-reviewed.
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