Classico-molecular targeting of oligopeptidase B, cysteine protease and variable surface glycoprotein (VSG) genes of Trypanosoma evansi
Author:
Publisher
Springer Science and Business Media LLC
Subject
Parasitology
Link
http://link.springer.com/content/pdf/10.1007/s12639-016-0748-7.pdf
Reference25 articles.
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3. Burleigh BA, Woolsey AM (2002) Cell signalling and Trypanosoma cruzi invasion. Cell Microbiol 4:701–711
4. Caler EV, de Avalos SV, Haynes PA, Andrews NW, Burleigh BA (1998) Oligopeptidase B-dependent signaling mediates host cell by Trypanosoma cruzi. EMBO 17:4975–4986
5. Dobson RJ, Dargantes AP, Mercado RT, Reid SA (2009) Models for Trypanosoma evansi (surra), its control and economic impact on small-hold livestock owners in the Philippines. Int J Parasitol 39:1115–1123
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1. Silent Trypanosoma evansi infection in humans from India revealed by serological and molecular surveys, and characterized by variable surface glycoprotein gene sequences;Acta Tropica;2022-05
2. Associative Genetic Diversity of RoTat 1.2 VSG in Different Trypanosoma evansi Isolates;Acta Parasitologica;2020-09-17
3. Oligopeptidase B, a missing enzyme in mammals and a potential drug target for trypanosomatid diseases;Biochimie;2019-12
4. Phylogenetic studies on RoTat 1.2 VSG of Trypanosoma evansi isolate from semi arid India;The Indian Journal of Animal Sciences;2018-05-02
5. First report of molecular characterization and phylogenetic analysis of RoTat 1.2 VSG of Trypanosoma evansi from equine isolate;Tropical Animal Health and Production;2017-08-22
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