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Genome-wide diversity and gene expression profiling of Babesia microti isolates identify polymorphic genes that mediate host-pathogen interactions

Babesia microti, a tick-transmitted, intraerythrocytic protozoan parasite circulating mainly among small mammals, is the primary cause of human babesiosis. While most cases are transmitted by Ixodes ticks, the disease may also be transmitted through blood transfusion and perinatally. A comprehensive...

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Autores principales: Silva, Joana C., Cornillot, Emmanuel, McCracken, Carrie, Usmani-Brown, Sahar, Dwivedi, Ankit, Ifeonu, Olukemi O., Crabtree, Jonathan, Gotia, Hanzel T., Virji, Azan Z., Reynes, Christelle, Colinge, Jacques, Kumar, Vidya, Lawres, Lauren, Pazzi, Joseph E., Pablo, Jozelyn V., Hung, Chris, Brancato, Jana, Kumari, Priti, Orvis, Joshua, Tretina, Kyle, Chibucos, Marcus, Ott, Sandy, Sadzewicz, Lisa, Sengamalay, Naomi, Shetty, Amol C., Su, Qi, Tallon, Luke, Fraser, Claire M., Frutos, Roger, Molina, Douglas M., Krause, Peter J., Ben Mamoun, Choukri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5082761/
https://www.ncbi.nlm.nih.gov/pubmed/27752055
http://dx.doi.org/10.1038/srep35284
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author Silva, Joana C.
Cornillot, Emmanuel
McCracken, Carrie
Usmani-Brown, Sahar
Dwivedi, Ankit
Ifeonu, Olukemi O.
Crabtree, Jonathan
Gotia, Hanzel T.
Virji, Azan Z.
Reynes, Christelle
Colinge, Jacques
Kumar, Vidya
Lawres, Lauren
Pazzi, Joseph E.
Pablo, Jozelyn V.
Hung, Chris
Brancato, Jana
Kumari, Priti
Orvis, Joshua
Tretina, Kyle
Chibucos, Marcus
Ott, Sandy
Sadzewicz, Lisa
Sengamalay, Naomi
Shetty, Amol C.
Su, Qi
Tallon, Luke
Fraser, Claire M.
Frutos, Roger
Molina, Douglas M.
Krause, Peter J.
Ben Mamoun, Choukri
author_facet Silva, Joana C.
Cornillot, Emmanuel
McCracken, Carrie
Usmani-Brown, Sahar
Dwivedi, Ankit
Ifeonu, Olukemi O.
Crabtree, Jonathan
Gotia, Hanzel T.
Virji, Azan Z.
Reynes, Christelle
Colinge, Jacques
Kumar, Vidya
Lawres, Lauren
Pazzi, Joseph E.
Pablo, Jozelyn V.
Hung, Chris
Brancato, Jana
Kumari, Priti
Orvis, Joshua
Tretina, Kyle
Chibucos, Marcus
Ott, Sandy
Sadzewicz, Lisa
Sengamalay, Naomi
Shetty, Amol C.
Su, Qi
Tallon, Luke
Fraser, Claire M.
Frutos, Roger
Molina, Douglas M.
Krause, Peter J.
Ben Mamoun, Choukri
author_sort Silva, Joana C.
collection PubMed
description Babesia microti, a tick-transmitted, intraerythrocytic protozoan parasite circulating mainly among small mammals, is the primary cause of human babesiosis. While most cases are transmitted by Ixodes ticks, the disease may also be transmitted through blood transfusion and perinatally. A comprehensive analysis of genome composition, genetic diversity, and gene expression profiling of seven B. microti isolates revealed that genetic variation in isolates from the Northeast United States is almost exclusively associated with genes encoding the surface proteome and secretome of the parasite. Furthermore, we found that polymorphism is restricted to a small number of genes, which are highly expressed during infection. In order to identify pathogen-encoded factors involved in host-parasite interactions, we screened a proteome array comprised of 174 B. microti proteins, including several predicted members of the parasite secretome. Using this immuno-proteomic approach we identified several novel antigens that trigger strong host immune responses during the onset of infection. The genomic and immunological data presented herein provide the first insights into the determinants of B. microti interaction with its mammalian hosts and their relevance for understanding the selective pressures acting on parasite evolution.
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spelling pubmed-50827612016-10-31 Genome-wide diversity and gene expression profiling of Babesia microti isolates identify polymorphic genes that mediate host-pathogen interactions Silva, Joana C. Cornillot, Emmanuel McCracken, Carrie Usmani-Brown, Sahar Dwivedi, Ankit Ifeonu, Olukemi O. Crabtree, Jonathan Gotia, Hanzel T. Virji, Azan Z. Reynes, Christelle Colinge, Jacques Kumar, Vidya Lawres, Lauren Pazzi, Joseph E. Pablo, Jozelyn V. Hung, Chris Brancato, Jana Kumari, Priti Orvis, Joshua Tretina, Kyle Chibucos, Marcus Ott, Sandy Sadzewicz, Lisa Sengamalay, Naomi Shetty, Amol C. Su, Qi Tallon, Luke Fraser, Claire M. Frutos, Roger Molina, Douglas M. Krause, Peter J. Ben Mamoun, Choukri Sci Rep Article Babesia microti, a tick-transmitted, intraerythrocytic protozoan parasite circulating mainly among small mammals, is the primary cause of human babesiosis. While most cases are transmitted by Ixodes ticks, the disease may also be transmitted through blood transfusion and perinatally. A comprehensive analysis of genome composition, genetic diversity, and gene expression profiling of seven B. microti isolates revealed that genetic variation in isolates from the Northeast United States is almost exclusively associated with genes encoding the surface proteome and secretome of the parasite. Furthermore, we found that polymorphism is restricted to a small number of genes, which are highly expressed during infection. In order to identify pathogen-encoded factors involved in host-parasite interactions, we screened a proteome array comprised of 174 B. microti proteins, including several predicted members of the parasite secretome. Using this immuno-proteomic approach we identified several novel antigens that trigger strong host immune responses during the onset of infection. The genomic and immunological data presented herein provide the first insights into the determinants of B. microti interaction with its mammalian hosts and their relevance for understanding the selective pressures acting on parasite evolution. Nature Publishing Group 2016-10-18 /pmc/articles/PMC5082761/ /pubmed/27752055 http://dx.doi.org/10.1038/srep35284 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Silva, Joana C.
Cornillot, Emmanuel
McCracken, Carrie
Usmani-Brown, Sahar
Dwivedi, Ankit
Ifeonu, Olukemi O.
Crabtree, Jonathan
Gotia, Hanzel T.
Virji, Azan Z.
Reynes, Christelle
Colinge, Jacques
Kumar, Vidya
Lawres, Lauren
Pazzi, Joseph E.
Pablo, Jozelyn V.
Hung, Chris
Brancato, Jana
Kumari, Priti
Orvis, Joshua
Tretina, Kyle
Chibucos, Marcus
Ott, Sandy
Sadzewicz, Lisa
Sengamalay, Naomi
Shetty, Amol C.
Su, Qi
Tallon, Luke
Fraser, Claire M.
Frutos, Roger
Molina, Douglas M.
Krause, Peter J.
Ben Mamoun, Choukri
Genome-wide diversity and gene expression profiling of Babesia microti isolates identify polymorphic genes that mediate host-pathogen interactions
title Genome-wide diversity and gene expression profiling of Babesia microti isolates identify polymorphic genes that mediate host-pathogen interactions
title_full Genome-wide diversity and gene expression profiling of Babesia microti isolates identify polymorphic genes that mediate host-pathogen interactions
title_fullStr Genome-wide diversity and gene expression profiling of Babesia microti isolates identify polymorphic genes that mediate host-pathogen interactions
title_full_unstemmed Genome-wide diversity and gene expression profiling of Babesia microti isolates identify polymorphic genes that mediate host-pathogen interactions
title_short Genome-wide diversity and gene expression profiling of Babesia microti isolates identify polymorphic genes that mediate host-pathogen interactions
title_sort genome-wide diversity and gene expression profiling of babesia microti isolates identify polymorphic genes that mediate host-pathogen interactions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5082761/
https://www.ncbi.nlm.nih.gov/pubmed/27752055
http://dx.doi.org/10.1038/srep35284
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