ABCG-like transporter of Trypanosoma cruzi involved in benznidazole resistance: Gene polymorphisms disclose inter-strain intragenic recombination in hybrid isolates

•The sequence of the ATP-binding cassette transporter TcABCG1 gene of fourteen T. cruzi strains was determined.•Gene polymorphisms were not associated with benznidazole resistance.•TcABCG1 hybrid haplotypes are mosaics originated by inter-strain intragenic recombination.•Orthologues of TcABCG1 trans...

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Published in:Infection, genetics and evolution Vol. 31; pp. 198 - 208
Main Authors: Franco, Jaques, Ferreira, Renata C., Ienne, Susan, Zingales, Bianca
Format: Journal Article
Language:English
Published: Netherlands Elsevier B.V 01-04-2015
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Abstract •The sequence of the ATP-binding cassette transporter TcABCG1 gene of fourteen T. cruzi strains was determined.•Gene polymorphisms were not associated with benznidazole resistance.•TcABCG1 hybrid haplotypes are mosaics originated by inter-strain intragenic recombination.•Orthologues of TcABCG1 transporter were found in Leishmania spp. and African trypanosomes. Benznidazole (BZ) is one of the two drugs for Chagas disease treatment. In a previous study we showed that the Trypanosoma cruzi ABCG-like transporter gene, named TcABCG1, is over-expressed in parasite strains naturally resistant to BZ and that the gene of TcI BZ-resistant strains exhibited several single nucleotide polymorphisms (SNPs) as compared to the gene of CL Brener BZ-susceptible strain. Here we report the sequence of TcABCG1 gene of fourteen T. cruzi strains, with diverse degrees of BZ sensitivity and belonging to different discrete typing units (DTUs) and Tcbat group. Although DTU-specific SNPs and amino acid changes were identified, no direct correlation with BZ-resistance phenotype was found. Thus, it is plausible that the transporter abundance is a determinant factor for drug resistance, as pointed out above. Sequence data were used for Bayesian phylogenies and network genealogy analysis. The network showed a high degree of reticulation suggesting genetic exchange between the parasites. TcI and TcII clades were clearly separated. Tcbat sequences were close to TcI. A fourth clade clustered TcABCG1 haplotypes of TcV, TcVI and TcIII strains, with closer proximity to TcI. Analysis of the recombination patterns indicated that hybrid strains contain haplotypes that are mosaics most likely derived by intragenic recombination of parental sequences. The data confirm that TcII and TcIII as the parentals of TcV and TcVI DTUs. Since genetic fingerprint of TcI was found in TcIII, we sustain the previously proposed “Two Hybridization model” for the origin of hybrid strains. Among the twenty best BLASTP hits in databases, orthologues of TcABCG1 transporter were found in Leishmania spp. and African trypanosomes, though their function remains undescribed.
AbstractList •The sequence of the ATP-binding cassette transporter TcABCG1 gene of fourteen T. cruzi strains was determined.•Gene polymorphisms were not associated with benznidazole resistance.•TcABCG1 hybrid haplotypes are mosaics originated by inter-strain intragenic recombination.•Orthologues of TcABCG1 transporter were found in Leishmania spp. and African trypanosomes. Benznidazole (BZ) is one of the two drugs for Chagas disease treatment. In a previous study we showed that the Trypanosoma cruzi ABCG-like transporter gene, named TcABCG1, is over-expressed in parasite strains naturally resistant to BZ and that the gene of TcI BZ-resistant strains exhibited several single nucleotide polymorphisms (SNPs) as compared to the gene of CL Brener BZ-susceptible strain. Here we report the sequence of TcABCG1 gene of fourteen T. cruzi strains, with diverse degrees of BZ sensitivity and belonging to different discrete typing units (DTUs) and Tcbat group. Although DTU-specific SNPs and amino acid changes were identified, no direct correlation with BZ-resistance phenotype was found. Thus, it is plausible that the transporter abundance is a determinant factor for drug resistance, as pointed out above. Sequence data were used for Bayesian phylogenies and network genealogy analysis. The network showed a high degree of reticulation suggesting genetic exchange between the parasites. TcI and TcII clades were clearly separated. Tcbat sequences were close to TcI. A fourth clade clustered TcABCG1 haplotypes of TcV, TcVI and TcIII strains, with closer proximity to TcI. Analysis of the recombination patterns indicated that hybrid strains contain haplotypes that are mosaics most likely derived by intragenic recombination of parental sequences. The data confirm that TcII and TcIII as the parentals of TcV and TcVI DTUs. Since genetic fingerprint of TcI was found in TcIII, we sustain the previously proposed “Two Hybridization model” for the origin of hybrid strains. Among the twenty best BLASTP hits in databases, orthologues of TcABCG1 transporter were found in Leishmania spp. and African trypanosomes, though their function remains undescribed.
Benznidazole (BZ) is one of the two drugs for Chagas disease treatment. In a previous study we showed that the Trypanosoma cruzi ABCG-like transporter gene, named TcABCG1, is over-expressed in parasite strains naturally resistant to BZ and that the gene of TcI BZ-resistant strains exhibited several single nucleotide polymorphisms (SNPs) as compared to the gene of CL Brener BZ-susceptible strain. Here we report the sequence of TcABCG1 gene of fourteen T. cruzi strains, with diverse degrees of BZ sensitivity and belonging to different discrete typing units (DTUs) and Tcbat group. Although DTU-specific SNPs and amino acid changes were identified, no direct correlation with BZ-resistance phenotype was found. Thus, it is plausible that the transporter abundance is a determinant factor for drug resistance, as pointed out above. Sequence data were used for Bayesian phylogenies and network genealogy analysis. The network showed a high degree of reticulation suggesting genetic exchange between the parasites. TcI and TcII clades were clearly separated. Tcbat sequences were close to TcI. A fourth clade clustered TcABCG1 haplotypes of TcV, TcVI and TcIII strains, with closer proximity to TcI. Analysis of the recombination patterns indicated that hybrid strains contain haplotypes that are mosaics most likely derived by intragenic recombination of parental sequences. The data confirm that TcII and TcIII as the parentals of TcV and TcVI DTUs. Since genetic fingerprint of TcI was found in TcIII, we sustain the previously proposed "Two Hybridization model" for the origin of hybrid strains. Among the twenty best BLASTP hits in databases, orthologues of TcABCG1 transporter were found in Leishmania spp. and African trypanosomes, though their function remains undescribed.
Author Franco, Jaques
Zingales, Bianca
Ferreira, Renata C.
Ienne, Susan
Author_xml – sequence: 1
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  givenname: Renata C.
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  fullname: Ferreira, Renata C.
  organization: Laboratório de Genômica Evolutiva e Biocomplexidade, Universidade Federal de São Paulo, Rua Pedro de Toledo 669, 04039-032 São Paulo, SP, Brazil
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  givenname: Susan
  orcidid: 0000-0001-5088-8181
  surname: Ienne
  fullname: Ienne, Susan
  organization: Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, Avenida Professor Lineu Prestes 748, 05508-000 São Paulo, SP, Brazil
– sequence: 4
  givenname: Bianca
  surname: Zingales
  fullname: Zingales, Bianca
  email: zingales@iq.usp.br
  organization: Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, Avenida Professor Lineu Prestes 748, 05508-000 São Paulo, SP, Brazil
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Keywords Intragenic recombination
Orthologues in trypanosomatids
Trypanosoma cruzi DTUs
ATP-binding cassette transporter
Network genealogy
Benznidazole sensitivity
Language English
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Snippet •The sequence of the ATP-binding cassette transporter TcABCG1 gene of fourteen T. cruzi strains was determined.•Gene polymorphisms were not associated with...
Benznidazole (BZ) is one of the two drugs for Chagas disease treatment. In a previous study we showed that the Trypanosoma cruzi ABCG-like transporter gene,...
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SubjectTerms Amino Acid Sequence
ATP-binding cassette transporter
ATP-Binding Cassette Transporters - genetics
Benznidazole sensitivity
Cloning, Molecular
Drug Resistance
Genes, Protozoan
Genetic Variation
Intragenic recombination
Molecular Sequence Data
Network genealogy
Nitroimidazoles - pharmacology
Orthologues in trypanosomatids
Parasitic Sensitivity Tests
Phylogeny
Polymorphism, Genetic
Recombination, Genetic
Sequence Analysis, DNA
Trypanocidal Agents - pharmacology
Trypanosoma cruzi - drug effects
Trypanosoma cruzi - genetics
Trypanosoma cruzi DTUs
Title ABCG-like transporter of Trypanosoma cruzi involved in benznidazole resistance: Gene polymorphisms disclose inter-strain intragenic recombination in hybrid isolates
URI https://dx.doi.org/10.1016/j.meegid.2015.01.030
https://www.ncbi.nlm.nih.gov/pubmed/25660041
https://search.proquest.com/docview/1664205525
Volume 31
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