Crystal structure of Plasmodium knowlesi apical membrane antigen 1 and its complex with an invasion-inhibitory monoclonal antibody

The malaria parasite Plasmodiumknowlesi, previously associated only with infection of macaques, is now known to infect humans as well and has become a significant public health problem in Southeast Asia. This species should therefore be targeted in vaccine and therapeutic strategies against human ma...

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Main Authors: Vulliez-Le Normand, Brigitte, W. Faber, Bart, A. Saul, Frederick, van der Eijk, Marjolein, W. Thomas, Alan, Balbir, Singh, H. M. Kocken, Clemens, A. Bentley, Graham
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Language:English
Published: Public Library of Science 2015
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spelling my.unimas.ir.148512021-06-01T12:22:45Z http://ir.unimas.my/id/eprint/14851/ Crystal structure of Plasmodium knowlesi apical membrane antigen 1 and its complex with an invasion-inhibitory monoclonal antibody Vulliez-Le Normand, Brigitte W. Faber, Bart A. Saul, Frederick van der Eijk, Marjolein W. Thomas, Alan Balbir, Singh H. M. Kocken, Clemens A. Bentley, Graham RB Pathology RS Pharmacy and materia medica The malaria parasite Plasmodiumknowlesi, previously associated only with infection of macaques, is now known to infect humans as well and has become a significant public health problem in Southeast Asia. This species should therefore be targeted in vaccine and therapeutic strategies against human malaria. Apical Membrane Antigen 1 (AMA1), which plays a role in Plasmodium merozoite invasion of the erythrocyte, is currently being pursued in human vaccine trials against P. falciparum. Recent vaccine trials in macaques using the P. knowlesi orthologue PkAMA1 have shown that it protects against infection by this parasite species and thus should be developed for human vaccination as well. Here, we present the crystal structure of Domains 1 and 2 of the PkAMA1 ectodomain, and of its complex with the invasion-inhibitory monoclonal antibody R31C2. The Domain 2 (D2) loop, which is displaced upon binding the Rhoptry Neck Protein 2 (RON2) receptor, makes significant contacts with the antibody. R31C2 inhibits binding of the Rhoptry Neck Protein 2 (RON2) receptor by steric blocking of the hydrophobic groove and by preventing the displacement of the D2 loop which is essential for exposing the complete binding site on AMA1. R31C2 recognizes a non-polymorphic epitope and should thus be cross-strain reactive. PkAMA1 is much less polymorphic than the P. falciparum and P. vivax orthologues. Unlike these two latter species, there are no polymorphic sites close to the RON2-binding site of PkAMA1, suggesting that P. knowlesi has not developed a mechanism of immune escape from the host's humoral response to AMA1. © 2015 Vulliez-Le Normand et al. Public Library of Science 2015 Article PeerReviewed text en http://ir.unimas.my/id/eprint/14851/1/Crystal.pdf Vulliez-Le Normand, Brigitte and W. Faber, Bart and A. Saul, Frederick and van der Eijk, Marjolein and W. Thomas, Alan and Balbir, Singh and H. M. Kocken, Clemens and A. Bentley, Graham (2015) Crystal structure of Plasmodium knowlesi apical membrane antigen 1 and its complex with an invasion-inhibitory monoclonal antibody. PLoS ONE, 10 (4). pp. 1-16. ISSN 19326203 http://www.scopus.com/inward/record.url?eid=2-s2.0-84928499366&partnerID=40&md5=7e72610acbee14a6c7b0a5aa1cdbbf7f doi:10.1371/journal.pone.0123567
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic RB Pathology
RS Pharmacy and materia medica
spellingShingle RB Pathology
RS Pharmacy and materia medica
Vulliez-Le Normand, Brigitte
W. Faber, Bart
A. Saul, Frederick
van der Eijk, Marjolein
W. Thomas, Alan
Balbir, Singh
H. M. Kocken, Clemens
A. Bentley, Graham
Crystal structure of Plasmodium knowlesi apical membrane antigen 1 and its complex with an invasion-inhibitory monoclonal antibody
description The malaria parasite Plasmodiumknowlesi, previously associated only with infection of macaques, is now known to infect humans as well and has become a significant public health problem in Southeast Asia. This species should therefore be targeted in vaccine and therapeutic strategies against human malaria. Apical Membrane Antigen 1 (AMA1), which plays a role in Plasmodium merozoite invasion of the erythrocyte, is currently being pursued in human vaccine trials against P. falciparum. Recent vaccine trials in macaques using the P. knowlesi orthologue PkAMA1 have shown that it protects against infection by this parasite species and thus should be developed for human vaccination as well. Here, we present the crystal structure of Domains 1 and 2 of the PkAMA1 ectodomain, and of its complex with the invasion-inhibitory monoclonal antibody R31C2. The Domain 2 (D2) loop, which is displaced upon binding the Rhoptry Neck Protein 2 (RON2) receptor, makes significant contacts with the antibody. R31C2 inhibits binding of the Rhoptry Neck Protein 2 (RON2) receptor by steric blocking of the hydrophobic groove and by preventing the displacement of the D2 loop which is essential for exposing the complete binding site on AMA1. R31C2 recognizes a non-polymorphic epitope and should thus be cross-strain reactive. PkAMA1 is much less polymorphic than the P. falciparum and P. vivax orthologues. Unlike these two latter species, there are no polymorphic sites close to the RON2-binding site of PkAMA1, suggesting that P. knowlesi has not developed a mechanism of immune escape from the host's humoral response to AMA1. © 2015 Vulliez-Le Normand et al.
format Article
author Vulliez-Le Normand, Brigitte
W. Faber, Bart
A. Saul, Frederick
van der Eijk, Marjolein
W. Thomas, Alan
Balbir, Singh
H. M. Kocken, Clemens
A. Bentley, Graham
author_facet Vulliez-Le Normand, Brigitte
W. Faber, Bart
A. Saul, Frederick
van der Eijk, Marjolein
W. Thomas, Alan
Balbir, Singh
H. M. Kocken, Clemens
A. Bentley, Graham
author_sort Vulliez-Le Normand, Brigitte
title Crystal structure of Plasmodium knowlesi apical membrane antigen 1 and its complex with an invasion-inhibitory monoclonal antibody
title_short Crystal structure of Plasmodium knowlesi apical membrane antigen 1 and its complex with an invasion-inhibitory monoclonal antibody
title_full Crystal structure of Plasmodium knowlesi apical membrane antigen 1 and its complex with an invasion-inhibitory monoclonal antibody
title_fullStr Crystal structure of Plasmodium knowlesi apical membrane antigen 1 and its complex with an invasion-inhibitory monoclonal antibody
title_full_unstemmed Crystal structure of Plasmodium knowlesi apical membrane antigen 1 and its complex with an invasion-inhibitory monoclonal antibody
title_sort crystal structure of plasmodium knowlesi apical membrane antigen 1 and its complex with an invasion-inhibitory monoclonal antibody
publisher Public Library of Science
publishDate 2015
url http://ir.unimas.my/id/eprint/14851/1/Crystal.pdf
http://ir.unimas.my/id/eprint/14851/
http://www.scopus.com/inward/record.url?eid=2-s2.0-84928499366&partnerID=40&md5=7e72610acbee14a6c7b0a5aa1cdbbf7f
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