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Functional analysis of drug resistance‐associated mutations in the T rypanosoma brucei adenosine transporter 1 (TbAT1) and the proposal of a structural model for the protein

The T rypanosoma brucei aminopurine transporter P2/TbAT1 has long been implicated in the transport of, and resistance to, the diamidine and melaminophenyl arsenical classes of drugs that form the backbone of the pharmacopoeia against African trypanosomiasis. Genetic alterations including deletions a...

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Autores principales: Munday, Jane C., Tagoe, Daniel N. A., Eze, Anthonius A., Krezdorn, Jessica A. M., Rojas López, Karla E., Alkhaldi, Abdulsalam A. M., McDonald, Fiona, Still, Jennifer, Alzahrani, Khalid J., Settimo, Luca, De Koning, Harry P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4755147/
https://www.ncbi.nlm.nih.gov/pubmed/25708978
http://dx.doi.org/10.1111/mmi.12979
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author Munday, Jane C.
Tagoe, Daniel N. A.
Eze, Anthonius A.
Krezdorn, Jessica A. M.
Rojas López, Karla E.
Alkhaldi, Abdulsalam A. M.
McDonald, Fiona
Still, Jennifer
Alzahrani, Khalid J.
Settimo, Luca
De Koning, Harry P.
author_facet Munday, Jane C.
Tagoe, Daniel N. A.
Eze, Anthonius A.
Krezdorn, Jessica A. M.
Rojas López, Karla E.
Alkhaldi, Abdulsalam A. M.
McDonald, Fiona
Still, Jennifer
Alzahrani, Khalid J.
Settimo, Luca
De Koning, Harry P.
author_sort Munday, Jane C.
collection PubMed
description The T rypanosoma brucei aminopurine transporter P2/TbAT1 has long been implicated in the transport of, and resistance to, the diamidine and melaminophenyl arsenical classes of drugs that form the backbone of the pharmacopoeia against African trypanosomiasis. Genetic alterations including deletions and single nucleotide polymorphisms (SNPs) have been observed in numerous strains and clinical isolates. Here, we systematically investigate each reported mutation and assess their effects on transporter function after expression in a tbat1 (−/−) T . brucei line. Out of a set of six reported SNPs from a reported ‘resistance allele’, none significantly impaired sensitivity to pentamidine, diminazene or melarsoprol, relative to the TbAT 1‐WT allele, although several combinations, and the deletion of the codon for residue F316, resulted in highly significant impairment. These combinations of SNPs, and ΔF316, also strongly impaired the uptake of [(3) H]‐adenosine and [(3) H]‐diminazene, identical to the tbat1 (−/−) control. The TbAT1 protein model predicted that residues F19, D140 and F316 interact with the substrate of the transporter. Mutation of D140 to alanine resulted in an inactive transporter, whereas the mutation F19A produced a transporter with a slightly increased affinity for [(3) H]‐diminazene but reduced the uptake rate. The results presented here validate earlier hypotheses of drug binding motifs for TbAT1.
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spelling pubmed-47551472016-02-25 Functional analysis of drug resistance‐associated mutations in the T rypanosoma brucei adenosine transporter 1 (TbAT1) and the proposal of a structural model for the protein Munday, Jane C. Tagoe, Daniel N. A. Eze, Anthonius A. Krezdorn, Jessica A. M. Rojas López, Karla E. Alkhaldi, Abdulsalam A. M. McDonald, Fiona Still, Jennifer Alzahrani, Khalid J. Settimo, Luca De Koning, Harry P. Mol Microbiol Research Articles The T rypanosoma brucei aminopurine transporter P2/TbAT1 has long been implicated in the transport of, and resistance to, the diamidine and melaminophenyl arsenical classes of drugs that form the backbone of the pharmacopoeia against African trypanosomiasis. Genetic alterations including deletions and single nucleotide polymorphisms (SNPs) have been observed in numerous strains and clinical isolates. Here, we systematically investigate each reported mutation and assess their effects on transporter function after expression in a tbat1 (−/−) T . brucei line. Out of a set of six reported SNPs from a reported ‘resistance allele’, none significantly impaired sensitivity to pentamidine, diminazene or melarsoprol, relative to the TbAT 1‐WT allele, although several combinations, and the deletion of the codon for residue F316, resulted in highly significant impairment. These combinations of SNPs, and ΔF316, also strongly impaired the uptake of [(3) H]‐adenosine and [(3) H]‐diminazene, identical to the tbat1 (−/−) control. The TbAT1 protein model predicted that residues F19, D140 and F316 interact with the substrate of the transporter. Mutation of D140 to alanine resulted in an inactive transporter, whereas the mutation F19A produced a transporter with a slightly increased affinity for [(3) H]‐diminazene but reduced the uptake rate. The results presented here validate earlier hypotheses of drug binding motifs for TbAT1. John Wiley and Sons Inc. 2015-03-21 2015-05 /pmc/articles/PMC4755147/ /pubmed/25708978 http://dx.doi.org/10.1111/mmi.12979 Text en © 2015 The Authors. Molecular Microbiology published by John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Munday, Jane C.
Tagoe, Daniel N. A.
Eze, Anthonius A.
Krezdorn, Jessica A. M.
Rojas López, Karla E.
Alkhaldi, Abdulsalam A. M.
McDonald, Fiona
Still, Jennifer
Alzahrani, Khalid J.
Settimo, Luca
De Koning, Harry P.
Functional analysis of drug resistance‐associated mutations in the T rypanosoma brucei adenosine transporter 1 (TbAT1) and the proposal of a structural model for the protein
title Functional analysis of drug resistance‐associated mutations in the T rypanosoma brucei adenosine transporter 1 (TbAT1) and the proposal of a structural model for the protein
title_full Functional analysis of drug resistance‐associated mutations in the T rypanosoma brucei adenosine transporter 1 (TbAT1) and the proposal of a structural model for the protein
title_fullStr Functional analysis of drug resistance‐associated mutations in the T rypanosoma brucei adenosine transporter 1 (TbAT1) and the proposal of a structural model for the protein
title_full_unstemmed Functional analysis of drug resistance‐associated mutations in the T rypanosoma brucei adenosine transporter 1 (TbAT1) and the proposal of a structural model for the protein
title_short Functional analysis of drug resistance‐associated mutations in the T rypanosoma brucei adenosine transporter 1 (TbAT1) and the proposal of a structural model for the protein
title_sort functional analysis of drug resistance‐associated mutations in the t rypanosoma brucei adenosine transporter 1 (tbat1) and the proposal of a structural model for the protein
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4755147/
https://www.ncbi.nlm.nih.gov/pubmed/25708978
http://dx.doi.org/10.1111/mmi.12979
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