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Conformational Dynamics and Antigenicity in the Disordered Malaria Antigen Merozoite Surface Protein 2

Merozoite surface protein 2 (MSP2) of Plasmodium falciparum is an abundant, intrinsically disordered protein that is GPI-anchored to the surface of the invasive blood stage of the malaria parasite. Recombinant MSP2 has been trialled as a component of a malaria vaccine, and is one of several disorder...

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Autores principales: MacRaild, Christopher A., Zachrdla, Milan, Andrew, Dean, Krishnarjuna, Bankala, Nováček, Jiří, Žídek, Lukáš, Sklenář, Vladimír, Richards, Jack S., Beeson, James G., Anders, Robin F., Norton, Raymond S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4351039/
https://www.ncbi.nlm.nih.gov/pubmed/25742002
http://dx.doi.org/10.1371/journal.pone.0119899
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author MacRaild, Christopher A.
Zachrdla, Milan
Andrew, Dean
Krishnarjuna, Bankala
Nováček, Jiří
Žídek, Lukáš
Sklenář, Vladimír
Richards, Jack S.
Beeson, James G.
Anders, Robin F.
Norton, Raymond S.
author_facet MacRaild, Christopher A.
Zachrdla, Milan
Andrew, Dean
Krishnarjuna, Bankala
Nováček, Jiří
Žídek, Lukáš
Sklenář, Vladimír
Richards, Jack S.
Beeson, James G.
Anders, Robin F.
Norton, Raymond S.
author_sort MacRaild, Christopher A.
collection PubMed
description Merozoite surface protein 2 (MSP2) of Plasmodium falciparum is an abundant, intrinsically disordered protein that is GPI-anchored to the surface of the invasive blood stage of the malaria parasite. Recombinant MSP2 has been trialled as a component of a malaria vaccine, and is one of several disordered proteins that are candidates for inclusion in vaccines for malaria and other diseases. Nonetheless, little is known about the implications of protein disorder for the development of an effective antibody response. We have therefore undertaken a detailed analysis of the conformational dynamics of the two allelic forms of MSP2 (3D7 and FC27) using NMR spectroscopy. Chemical shifts and NMR relaxation data indicate that conformational and dynamic properties of the N- and C-terminal conserved regions in the two forms of MSP2 are essentially identical, but significant variation exists between and within the central variable regions. We observe a strong relationship between the conformational dynamics and the antigenicity of MSP2, as assessed with antisera to recombinant MSP2. Regions of increased conformational order in MSP2, including those in the conserved regions, are more strongly antigenic, while the most flexible regions are minimally antigenic. This suggests that modifications that increase conformational order may offer a means to tune the antigenicity of MSP2 and other disordered antigens, with implications for vaccine design.
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spelling pubmed-43510392015-03-17 Conformational Dynamics and Antigenicity in the Disordered Malaria Antigen Merozoite Surface Protein 2 MacRaild, Christopher A. Zachrdla, Milan Andrew, Dean Krishnarjuna, Bankala Nováček, Jiří Žídek, Lukáš Sklenář, Vladimír Richards, Jack S. Beeson, James G. Anders, Robin F. Norton, Raymond S. PLoS One Research Article Merozoite surface protein 2 (MSP2) of Plasmodium falciparum is an abundant, intrinsically disordered protein that is GPI-anchored to the surface of the invasive blood stage of the malaria parasite. Recombinant MSP2 has been trialled as a component of a malaria vaccine, and is one of several disordered proteins that are candidates for inclusion in vaccines for malaria and other diseases. Nonetheless, little is known about the implications of protein disorder for the development of an effective antibody response. We have therefore undertaken a detailed analysis of the conformational dynamics of the two allelic forms of MSP2 (3D7 and FC27) using NMR spectroscopy. Chemical shifts and NMR relaxation data indicate that conformational and dynamic properties of the N- and C-terminal conserved regions in the two forms of MSP2 are essentially identical, but significant variation exists between and within the central variable regions. We observe a strong relationship between the conformational dynamics and the antigenicity of MSP2, as assessed with antisera to recombinant MSP2. Regions of increased conformational order in MSP2, including those in the conserved regions, are more strongly antigenic, while the most flexible regions are minimally antigenic. This suggests that modifications that increase conformational order may offer a means to tune the antigenicity of MSP2 and other disordered antigens, with implications for vaccine design. Public Library of Science 2015-03-05 /pmc/articles/PMC4351039/ /pubmed/25742002 http://dx.doi.org/10.1371/journal.pone.0119899 Text en © 2015 MacRaild 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
MacRaild, Christopher A.
Zachrdla, Milan
Andrew, Dean
Krishnarjuna, Bankala
Nováček, Jiří
Žídek, Lukáš
Sklenář, Vladimír
Richards, Jack S.
Beeson, James G.
Anders, Robin F.
Norton, Raymond S.
Conformational Dynamics and Antigenicity in the Disordered Malaria Antigen Merozoite Surface Protein 2
title Conformational Dynamics and Antigenicity in the Disordered Malaria Antigen Merozoite Surface Protein 2
title_full Conformational Dynamics and Antigenicity in the Disordered Malaria Antigen Merozoite Surface Protein 2
title_fullStr Conformational Dynamics and Antigenicity in the Disordered Malaria Antigen Merozoite Surface Protein 2
title_full_unstemmed Conformational Dynamics and Antigenicity in the Disordered Malaria Antigen Merozoite Surface Protein 2
title_short Conformational Dynamics and Antigenicity in the Disordered Malaria Antigen Merozoite Surface Protein 2
title_sort conformational dynamics and antigenicity in the disordered malaria antigen merozoite surface protein 2
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4351039/
https://www.ncbi.nlm.nih.gov/pubmed/25742002
http://dx.doi.org/10.1371/journal.pone.0119899
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