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Theileria parasites secrete a prolyl isomerase to maintain host leukocyte transformation

Infectious agents develop intricate mechanisms to interact with host cell pathways and hijack the genetic and epigenetic machinery to change phenotypic states. Amongst the Apicomplexa phylum of obligate intracellular parasites which cause veterinary and human diseases, Theileria is the only genus wh...

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Autores principales: Marsolier, J., Perichon, M., DeBarry, JD., Villoutreix, BO., Chluba, J., Lopez, T., Garrido, C., Zhou, XZ., Lu, KP., Fritsch, L., Ait-Si-Ali, S., Mhadhbi, M, Medjkane, S., Weitzman, JB.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4401560/
https://www.ncbi.nlm.nih.gov/pubmed/25624101
http://dx.doi.org/10.1038/nature14044
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author Marsolier, J.
Perichon, M.
DeBarry, JD.
Villoutreix, BO.
Chluba, J.
Lopez, T.
Garrido, C.
Zhou, XZ.
Lu, KP.
Fritsch, L.
Ait-Si-Ali, S.
Mhadhbi, M
Medjkane, S.
Weitzman, JB.
author_facet Marsolier, J.
Perichon, M.
DeBarry, JD.
Villoutreix, BO.
Chluba, J.
Lopez, T.
Garrido, C.
Zhou, XZ.
Lu, KP.
Fritsch, L.
Ait-Si-Ali, S.
Mhadhbi, M
Medjkane, S.
Weitzman, JB.
author_sort Marsolier, J.
collection PubMed
description Infectious agents develop intricate mechanisms to interact with host cell pathways and hijack the genetic and epigenetic machinery to change phenotypic states. Amongst the Apicomplexa phylum of obligate intracellular parasites which cause veterinary and human diseases, Theileria is the only genus which transforms its mammalian host cells(1). Theileria infection of bovine leukocytes induces proliferative and invasive phenotypes associated with activated signalling pathways, notably JNK and AP-1(2). The transformed phenotypes are reversed by treatment with the theilericidal drug Buparvaquone(3). We used comparative genomics to identify a homologue of the Peptidyl Prolyl Isomerase Pin1 (designated TaPin1) in T. annulata which is secreted into the host cell and modulates oncogenic signalling pathways. Here we show that TaPin1 is a bona fide prolyl isomerase and that it interacts with the host ubiquitin ligase FBW7 leading to its degradation and subsequent stabilization of c-Jun which promotes transformation. We performed in vitro analysis and in vivo zebrafish xenograft experiments to demonstrate that TaPin1 is directly inhibited by the anti-parasite drug Buparvaquone (and other known Pin1 inhibitors) and is mutated in a drug-resistant strain. Prolyl isomerisation is thus a conserved mechanism which is important in cancer and is used by Theileria parasites to manipulate host oncogenic signaling.
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spelling pubmed-44015602015-10-16 Theileria parasites secrete a prolyl isomerase to maintain host leukocyte transformation Marsolier, J. Perichon, M. DeBarry, JD. Villoutreix, BO. Chluba, J. Lopez, T. Garrido, C. Zhou, XZ. Lu, KP. Fritsch, L. Ait-Si-Ali, S. Mhadhbi, M Medjkane, S. Weitzman, JB. Nature Article Infectious agents develop intricate mechanisms to interact with host cell pathways and hijack the genetic and epigenetic machinery to change phenotypic states. Amongst the Apicomplexa phylum of obligate intracellular parasites which cause veterinary and human diseases, Theileria is the only genus which transforms its mammalian host cells(1). Theileria infection of bovine leukocytes induces proliferative and invasive phenotypes associated with activated signalling pathways, notably JNK and AP-1(2). The transformed phenotypes are reversed by treatment with the theilericidal drug Buparvaquone(3). We used comparative genomics to identify a homologue of the Peptidyl Prolyl Isomerase Pin1 (designated TaPin1) in T. annulata which is secreted into the host cell and modulates oncogenic signalling pathways. Here we show that TaPin1 is a bona fide prolyl isomerase and that it interacts with the host ubiquitin ligase FBW7 leading to its degradation and subsequent stabilization of c-Jun which promotes transformation. We performed in vitro analysis and in vivo zebrafish xenograft experiments to demonstrate that TaPin1 is directly inhibited by the anti-parasite drug Buparvaquone (and other known Pin1 inhibitors) and is mutated in a drug-resistant strain. Prolyl isomerisation is thus a conserved mechanism which is important in cancer and is used by Theileria parasites to manipulate host oncogenic signaling. 2015-01-26 2015-04-16 /pmc/articles/PMC4401560/ /pubmed/25624101 http://dx.doi.org/10.1038/nature14044 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Marsolier, J.
Perichon, M.
DeBarry, JD.
Villoutreix, BO.
Chluba, J.
Lopez, T.
Garrido, C.
Zhou, XZ.
Lu, KP.
Fritsch, L.
Ait-Si-Ali, S.
Mhadhbi, M
Medjkane, S.
Weitzman, JB.
Theileria parasites secrete a prolyl isomerase to maintain host leukocyte transformation
title Theileria parasites secrete a prolyl isomerase to maintain host leukocyte transformation
title_full Theileria parasites secrete a prolyl isomerase to maintain host leukocyte transformation
title_fullStr Theileria parasites secrete a prolyl isomerase to maintain host leukocyte transformation
title_full_unstemmed Theileria parasites secrete a prolyl isomerase to maintain host leukocyte transformation
title_short Theileria parasites secrete a prolyl isomerase to maintain host leukocyte transformation
title_sort theileria parasites secrete a prolyl isomerase to maintain host leukocyte transformation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4401560/
https://www.ncbi.nlm.nih.gov/pubmed/25624101
http://dx.doi.org/10.1038/nature14044
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