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1.
J Immunoassay Immunochem ; 39(2): 173-189, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29364086

RESUMO

Salivarian trypanosomes evade the host immune system by continually swapping their protective variant surface glycoprotein (VSG) coat. Given that VSGs from various trypanosome stocks exhibited cross-reactivity (Camargo et al., Vet. Parasitol. 207, 17-33, 2015), we analyzed here which components are the antigenic determinants for this cross-reaction. Soluble forms of VSGs were purified from four Venezuelan animal trypanosome isolates: TeAp-N/D1, TeAp-ElFrio01, TeAp-Mantecal01, and TeGu-Terecay323. By using the VSG soluble form from TeAp-N/D1, we found that neither the inositol-1,2-cyclic phosphate moiety of the cross-reacting determinant nor the carbohydrate chains were exclusively responsible for its cross-reactivity. Then, all four purified glycoproteins were digested with papain and the resulting peptides were separated by high-performance liquid chromatography. Dot blot evaluation of the fractions using sera from trypanosome-infected animals yielded peptides that possessed cross-reaction activity, demonstrating for the first time that proteinaceous epitopes are also responsible for the cross-reactivity of trypanosome VSGs.


Assuntos
Carboidratos/imunologia , Reações Cruzadas/imunologia , Fosfatos de Inositol/imunologia , Glicoproteínas de Membrana/imunologia , Proteínas de Protozoários/imunologia , Trypanosoma/imunologia , Animais , Carboidratos/química , Equidae , Cavalos , Fosfatos de Inositol/química , Glicoproteínas de Membrana/química , Glicoproteínas de Membrana/isolamento & purificação , Proteínas de Protozoários/química , Trypanosoma/química
2.
Parasitology ; 144(7): 923-936, 2017 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-28183369

RESUMO

Trypanosoma equiperdum possesses a dense coat of a variant surface glycoprotein (VSG) that is used to evade the host immune response by a process known as antigenic variation. Soluble and membrane forms of the predominant VSG from the Venezuelan T. equiperdum TeAp-N/D1 strain (sVSG and mVSG, respectively) were purified to homogeneity; and antibodies against sVSG and mVSG were raised, isolated, and employed to produce anti-idiotypic antibodies that structurally mimic the VSG surface. Prospective VSG-binding partners were initially detected by far-Western blots, and then by immunoblots using the generated anti-idiotypic antibodies. Polypeptides of ~80 and 55 kDa were isolated when anti-idiotypic antibodies-Sepharose affinity matrixes were used as baits. Mass spectrometry sequencing yielded hits with various proteins from Trypanosoma brucei such as heat-shock protein 70, tryparedoxin peroxidase, VSG variants, expression site associated gene product 6, and two hypothetical proteins. In addition, a possible interaction with a protein homologous to the glutamic acid/alanine-rich protein from Trypanosoma congolense was also found. These results indicate that the corresponding orthologous gene products are candidates for VSG-interacting proteins in T. equiperdum.


Assuntos
Proteínas de Protozoários/metabolismo , Trypanosoma/metabolismo , Glicoproteínas Variantes de Superfície de Trypanosoma/metabolismo , Ligação Proteica
3.
Vet Parasitol ; 207(1-2): 17-33, 2015 Jan 15.
Artigo em Inglês | MEDLINE | ID: mdl-25468674

RESUMO

Salivarian trypanosomes sequentially express only one variant surface glycoprotein (VSG) on their cell surface from a large repertoire of VSG genes. Seven cryopreserved animal trypanosome isolates known as TeAp-ElFrio01, TEVA1 (or TeAp-N/D1), TeGu-N/D1, TeAp-Mantecal01, TeGu-TerecayTrino, TeGu-Terecay03 and TeGu-Terecay323, which had been isolated from different hosts identified in several geographical areas of Venezuela were expanded using adult albino rats. Soluble forms of predominant VSGs expressed during the early infection stages were purified and corresponded to concanavalin A-binding proteins with molecular masses of 48-67 kDa by sodium dodecyl sulfate-polyacrylamide gel electropohoresis, and pI values between 6.1 and 7.5. The biochemical characterization of all purified soluble VSGs revealed that they were dimers in their native form and represented different gene products. Sequencing of some of these proteins yielded peptides homologous to VSGs from Trypanosoma (Trypanozoon) brucei and Trypanosoma (Trypanozoon) evansi and established that they most likely are mosaics generated by homologous recombination. Western blot analysis showed that all purified VSGs were cross-reacting antigens that were recognized by sera from animals infected with either T. evansi or Trypanosoma (Dutonella) vivax. The VSG glycosyl-phosphatidylinositol cross-reacting determinant epitope was only partially responsible for the cross-reactivity of the purified proteins, and antibodies appeared to recognize cross-reacting conformational epitopes from the various soluble VSGs. ELISA experiments were performed using infected bovine sera collected from cattle in a Venezuelan trypanosome-endemic area. In particular, soluble VSGs from two trypanosome isolates, TeGu-N/D1 and TeGu-TeracayTrino, were recognized by 93.38% and 73.55% of naturally T. vivax-infected bovine sera, respectively. However, approximately 70% of the sera samples did not recognize all seven purified proteins. Hence, the use of a combination of various VSGs for the diagnosis of animal trypanosomosis is recommended.


Assuntos
Anticorpos Antiprotozoários/sangue , Antígenos de Protozoários/imunologia , Trypanosoma/imunologia , Tripanossomíase/imunologia , Glicoproteínas Variantes de Superfície de Trypanosoma/imunologia , Animais , Bovinos , Reações Cruzadas , Eletroforese em Gel de Poliacrilamida/veterinária , Ensaio de Imunoadsorção Enzimática/veterinária , Peso Molecular , Ratos , Ratos Sprague-Dawley , Análise de Sequência de Proteína/veterinária , Trypanosoma/genética , Trypanosoma vivax/genética , Trypanosoma vivax/imunologia , Tripanossomíase/diagnóstico , Tripanossomíase Bovina/diagnóstico , Tripanossomíase Bovina/imunologia
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