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IMPIPS: The Immune Protection-Inducing Protein Structure Concept in the Search for Steric-Electron and Topochemical Principles for Complete Fully-Protective Chemically Synthesised Vaccine Development

Determining immune protection-inducing protein structures (IMPIPS) involves defining the stereo-electron and topochemical characteristics which are essential in MHC-p-TCR complex formation. Modified high activity binding peptides (mHABP) were thus synthesised to produce a large panel of IMPIPS measu...

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Autores principales: Patarroyo, Manuel Elkin, Bermúdez, Adriana, Alba, Martha Patricia, Vanegas, Magnolia, Moreno-Vranich, Armando, Poloche, Luis Antonio, Patarroyo, Manuel Alfonso
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4400017/
https://www.ncbi.nlm.nih.gov/pubmed/25879751
http://dx.doi.org/10.1371/journal.pone.0123249
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author Patarroyo, Manuel Elkin
Bermúdez, Adriana
Alba, Martha Patricia
Vanegas, Magnolia
Moreno-Vranich, Armando
Poloche, Luis Antonio
Patarroyo, Manuel Alfonso
author_facet Patarroyo, Manuel Elkin
Bermúdez, Adriana
Alba, Martha Patricia
Vanegas, Magnolia
Moreno-Vranich, Armando
Poloche, Luis Antonio
Patarroyo, Manuel Alfonso
author_sort Patarroyo, Manuel Elkin
collection PubMed
description Determining immune protection-inducing protein structures (IMPIPS) involves defining the stereo-electron and topochemical characteristics which are essential in MHC-p-TCR complex formation. Modified high activity binding peptides (mHABP) were thus synthesised to produce a large panel of IMPIPS measuring 26.5 ±3.5Å between the farthest atoms fitting into Pockets 1 to 9 of HLA-DRβ1* structures. They displayed a polyproline II-like (PPII(L)) structure with their backbone O and N atoms orientated to establish H-bonds with specific residues from HLA-DRβ1*-peptide binding regions (PBR). Residues having specific charge and gauche(+) orientation regarding p3χ1, p5χ2, and p7χ1 angles determined appropriate rotamer orientation for perfectly fitting into the TCR to induce an appropriate immune response. Immunological assays in Aotus monkeys involving IMPIPS mixtures led to promising results; taken together with the aforementioned physicochemical principles, non-interfering, long-lasting, protection-inducing, multi-epitope, multistage, minimal subunit-based chemically-synthesised peptides can be designed against diseases scourging humankind.
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spelling pubmed-44000172015-04-21 IMPIPS: The Immune Protection-Inducing Protein Structure Concept in the Search for Steric-Electron and Topochemical Principles for Complete Fully-Protective Chemically Synthesised Vaccine Development Patarroyo, Manuel Elkin Bermúdez, Adriana Alba, Martha Patricia Vanegas, Magnolia Moreno-Vranich, Armando Poloche, Luis Antonio Patarroyo, Manuel Alfonso PLoS One Research Article Determining immune protection-inducing protein structures (IMPIPS) involves defining the stereo-electron and topochemical characteristics which are essential in MHC-p-TCR complex formation. Modified high activity binding peptides (mHABP) were thus synthesised to produce a large panel of IMPIPS measuring 26.5 ±3.5Å between the farthest atoms fitting into Pockets 1 to 9 of HLA-DRβ1* structures. They displayed a polyproline II-like (PPII(L)) structure with their backbone O and N atoms orientated to establish H-bonds with specific residues from HLA-DRβ1*-peptide binding regions (PBR). Residues having specific charge and gauche(+) orientation regarding p3χ1, p5χ2, and p7χ1 angles determined appropriate rotamer orientation for perfectly fitting into the TCR to induce an appropriate immune response. Immunological assays in Aotus monkeys involving IMPIPS mixtures led to promising results; taken together with the aforementioned physicochemical principles, non-interfering, long-lasting, protection-inducing, multi-epitope, multistage, minimal subunit-based chemically-synthesised peptides can be designed against diseases scourging humankind. Public Library of Science 2015-04-16 /pmc/articles/PMC4400017/ /pubmed/25879751 http://dx.doi.org/10.1371/journal.pone.0123249 Text en © 2015 Patarroyo 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
Patarroyo, Manuel Elkin
Bermúdez, Adriana
Alba, Martha Patricia
Vanegas, Magnolia
Moreno-Vranich, Armando
Poloche, Luis Antonio
Patarroyo, Manuel Alfonso
IMPIPS: The Immune Protection-Inducing Protein Structure Concept in the Search for Steric-Electron and Topochemical Principles for Complete Fully-Protective Chemically Synthesised Vaccine Development
title IMPIPS: The Immune Protection-Inducing Protein Structure Concept in the Search for Steric-Electron and Topochemical Principles for Complete Fully-Protective Chemically Synthesised Vaccine Development
title_full IMPIPS: The Immune Protection-Inducing Protein Structure Concept in the Search for Steric-Electron and Topochemical Principles for Complete Fully-Protective Chemically Synthesised Vaccine Development
title_fullStr IMPIPS: The Immune Protection-Inducing Protein Structure Concept in the Search for Steric-Electron and Topochemical Principles for Complete Fully-Protective Chemically Synthesised Vaccine Development
title_full_unstemmed IMPIPS: The Immune Protection-Inducing Protein Structure Concept in the Search for Steric-Electron and Topochemical Principles for Complete Fully-Protective Chemically Synthesised Vaccine Development
title_short IMPIPS: The Immune Protection-Inducing Protein Structure Concept in the Search for Steric-Electron and Topochemical Principles for Complete Fully-Protective Chemically Synthesised Vaccine Development
title_sort impips: the immune protection-inducing protein structure concept in the search for steric-electron and topochemical principles for complete fully-protective chemically synthesised vaccine development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4400017/
https://www.ncbi.nlm.nih.gov/pubmed/25879751
http://dx.doi.org/10.1371/journal.pone.0123249
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