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Selective Blockade of Trypanosomatid Protein Synthesis by a Recombinant Antibody Anti-Trypanosoma cruzi P2β Protein

The ribosomal P proteins are located on the stalk of the ribosomal large subunit and play a critical role during the elongation step of protein synthesis. The single chain recombinant antibody C5 (scFv C5) directed against the C-terminal region of the Trypanosoma cruzi P2β protein (TcP2β) recognizes...

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Autores principales: Juri Ayub, Maximiliano, Nyambega, Benson, Simonetti, Leandro, Duffy, Tomas, Longhi, Silvia A., Gómez, Karina A., Hoebeke, Johan, Levin, Mariano J., Smulski, Cristian R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3343115/
https://www.ncbi.nlm.nih.gov/pubmed/22570698
http://dx.doi.org/10.1371/journal.pone.0036233
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author Juri Ayub, Maximiliano
Nyambega, Benson
Simonetti, Leandro
Duffy, Tomas
Longhi, Silvia A.
Gómez, Karina A.
Hoebeke, Johan
Levin, Mariano J.
Smulski, Cristian R.
author_facet Juri Ayub, Maximiliano
Nyambega, Benson
Simonetti, Leandro
Duffy, Tomas
Longhi, Silvia A.
Gómez, Karina A.
Hoebeke, Johan
Levin, Mariano J.
Smulski, Cristian R.
author_sort Juri Ayub, Maximiliano
collection PubMed
description The ribosomal P proteins are located on the stalk of the ribosomal large subunit and play a critical role during the elongation step of protein synthesis. The single chain recombinant antibody C5 (scFv C5) directed against the C-terminal region of the Trypanosoma cruzi P2β protein (TcP2β) recognizes the conserved C-terminal end of all T. cruzi ribosomal P proteins. Although this region is highly conserved among different species, surface plasmon resonance analysis showed that the scFv C5 possesses very low affinity for the corresponding mammalian epitope, despite having only one single amino-acid change. Crystallographic analysis, in silico modelization and NMR assays support the analysis, increasing our understanding on the structural basis of epitope specificity. In vitro protein synthesis experiments showed that scFv C5 was able to specifically block translation by T. cruzi and Crithidia fasciculata ribosomes, but virtually had no effect on Rattus norvegicus ribosomes. Therefore, we used the scFv C5 coding sequence to make inducible intrabodies in Trypanosoma brucei. Transgenic parasites showed a strong decrease in their growth rate after induction. These results strengthen the importance of the P protein C terminal regions for ribosomal translation activity and suggest that trypanosomatid ribosomal P proteins could be a possible target for selective therapeutic agents that could be derived from structural analysis of the scFv C5 antibody paratope.
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spelling pubmed-33431152012-05-08 Selective Blockade of Trypanosomatid Protein Synthesis by a Recombinant Antibody Anti-Trypanosoma cruzi P2β Protein Juri Ayub, Maximiliano Nyambega, Benson Simonetti, Leandro Duffy, Tomas Longhi, Silvia A. Gómez, Karina A. Hoebeke, Johan Levin, Mariano J. Smulski, Cristian R. PLoS One Research Article The ribosomal P proteins are located on the stalk of the ribosomal large subunit and play a critical role during the elongation step of protein synthesis. The single chain recombinant antibody C5 (scFv C5) directed against the C-terminal region of the Trypanosoma cruzi P2β protein (TcP2β) recognizes the conserved C-terminal end of all T. cruzi ribosomal P proteins. Although this region is highly conserved among different species, surface plasmon resonance analysis showed that the scFv C5 possesses very low affinity for the corresponding mammalian epitope, despite having only one single amino-acid change. Crystallographic analysis, in silico modelization and NMR assays support the analysis, increasing our understanding on the structural basis of epitope specificity. In vitro protein synthesis experiments showed that scFv C5 was able to specifically block translation by T. cruzi and Crithidia fasciculata ribosomes, but virtually had no effect on Rattus norvegicus ribosomes. Therefore, we used the scFv C5 coding sequence to make inducible intrabodies in Trypanosoma brucei. Transgenic parasites showed a strong decrease in their growth rate after induction. These results strengthen the importance of the P protein C terminal regions for ribosomal translation activity and suggest that trypanosomatid ribosomal P proteins could be a possible target for selective therapeutic agents that could be derived from structural analysis of the scFv C5 antibody paratope. Public Library of Science 2012-05-03 /pmc/articles/PMC3343115/ /pubmed/22570698 http://dx.doi.org/10.1371/journal.pone.0036233 Text en Juri Ayub et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Juri Ayub, Maximiliano
Nyambega, Benson
Simonetti, Leandro
Duffy, Tomas
Longhi, Silvia A.
Gómez, Karina A.
Hoebeke, Johan
Levin, Mariano J.
Smulski, Cristian R.
Selective Blockade of Trypanosomatid Protein Synthesis by a Recombinant Antibody Anti-Trypanosoma cruzi P2β Protein
title Selective Blockade of Trypanosomatid Protein Synthesis by a Recombinant Antibody Anti-Trypanosoma cruzi P2β Protein
title_full Selective Blockade of Trypanosomatid Protein Synthesis by a Recombinant Antibody Anti-Trypanosoma cruzi P2β Protein
title_fullStr Selective Blockade of Trypanosomatid Protein Synthesis by a Recombinant Antibody Anti-Trypanosoma cruzi P2β Protein
title_full_unstemmed Selective Blockade of Trypanosomatid Protein Synthesis by a Recombinant Antibody Anti-Trypanosoma cruzi P2β Protein
title_short Selective Blockade of Trypanosomatid Protein Synthesis by a Recombinant Antibody Anti-Trypanosoma cruzi P2β Protein
title_sort selective blockade of trypanosomatid protein synthesis by a recombinant antibody anti-trypanosoma cruzi p2β protein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3343115/
https://www.ncbi.nlm.nih.gov/pubmed/22570698
http://dx.doi.org/10.1371/journal.pone.0036233
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