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 comprehensiv...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Scientific reports 2016-10, Vol.6 (1), p.35284-35284, Article 35284
Hauptverfasser: 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
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung: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.
ISSN:2045-2322
2045-2322
DOI:10.1038/srep35284