Structural insight into epitopes in the pregnancy-associated malaria protein VAR2CSA.

Pregnancy-associated malaria is caused by Plasmodium falciparum malaria parasites binding specifically to chondroitin sulfate A in the placenta. This sequestration of parasites is a major cause of low birth weight in infants and anemia in the mothers. VAR2CSA, a polymorphic multi-domain protein of t...

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Main Authors: Pernille Andersen, Morten A Nielsen, Mafalda Resende, Thomas S Rask, Madeleine Dahlbäck, Thor Theander, Ole Lund, Ali Salanti
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-02-01
Series:PLoS Pathogens
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/18282103/?tool=EBI
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spelling doaj-cdfa653f3eb149debda6a0fa2fc76a282021-04-21T17:20:11ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742008-02-0142e4210.1371/journal.ppat.0040042Structural insight into epitopes in the pregnancy-associated malaria protein VAR2CSA.Pernille AndersenMorten A NielsenMafalda ResendeThomas S RaskMadeleine DahlbäckThor TheanderOle LundAli SalantiPregnancy-associated malaria is caused by Plasmodium falciparum malaria parasites binding specifically to chondroitin sulfate A in the placenta. This sequestration of parasites is a major cause of low birth weight in infants and anemia in the mothers. VAR2CSA, a polymorphic multi-domain protein of the PfEMP1 family, is the main parasite ligand for CSA binding, and identification of protective antibody epitopes is essential for VAR2CSA vaccine development. Attempts to determine the crystallographic structures of VAR2CSA or its domains have not been successful yet. In this study, we propose 3D models for each of the VAR2CSA DBL domains and we show that regions in the fold of VAR2CSA inter-domain 2 and a PfEMP1 CIDR domain seem to be homologous to the EBA-175 and Pk alpha-DBL fold. This suggests that ID2 could be a functional domain. We also identify regions of VAR2CSA present on the surface of native VAR2CSA by comparing reactivity of plasma containing anti-VAR2CSA antibodies in peptide array experiments before and after incubation with native VAR2CSA. By this method we identify conserved VAR2CSA regions targeted by antibodies that react with the native molecule expressed on infected erythrocytes. By mapping the data onto the DBL models we present evidence suggesting that the S1+S2 DBL sub-domains are generally surface-exposed in most domains, whereas the S3 sub-domains are less exposed in native VAR2CSA. These results comprise an important step towards understanding the structure of VAR2CSA on the surface of CSA-binding infected erythrocytes.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/18282103/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Pernille Andersen
Morten A Nielsen
Mafalda Resende
Thomas S Rask
Madeleine Dahlbäck
Thor Theander
Ole Lund
Ali Salanti
spellingShingle Pernille Andersen
Morten A Nielsen
Mafalda Resende
Thomas S Rask
Madeleine Dahlbäck
Thor Theander
Ole Lund
Ali Salanti
Structural insight into epitopes in the pregnancy-associated malaria protein VAR2CSA.
PLoS Pathogens
author_facet Pernille Andersen
Morten A Nielsen
Mafalda Resende
Thomas S Rask
Madeleine Dahlbäck
Thor Theander
Ole Lund
Ali Salanti
author_sort Pernille Andersen
title Structural insight into epitopes in the pregnancy-associated malaria protein VAR2CSA.
title_short Structural insight into epitopes in the pregnancy-associated malaria protein VAR2CSA.
title_full Structural insight into epitopes in the pregnancy-associated malaria protein VAR2CSA.
title_fullStr Structural insight into epitopes in the pregnancy-associated malaria protein VAR2CSA.
title_full_unstemmed Structural insight into epitopes in the pregnancy-associated malaria protein VAR2CSA.
title_sort structural insight into epitopes in the pregnancy-associated malaria protein var2csa.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2008-02-01
description Pregnancy-associated malaria is caused by Plasmodium falciparum malaria parasites binding specifically to chondroitin sulfate A in the placenta. This sequestration of parasites is a major cause of low birth weight in infants and anemia in the mothers. VAR2CSA, a polymorphic multi-domain protein of the PfEMP1 family, is the main parasite ligand for CSA binding, and identification of protective antibody epitopes is essential for VAR2CSA vaccine development. Attempts to determine the crystallographic structures of VAR2CSA or its domains have not been successful yet. In this study, we propose 3D models for each of the VAR2CSA DBL domains and we show that regions in the fold of VAR2CSA inter-domain 2 and a PfEMP1 CIDR domain seem to be homologous to the EBA-175 and Pk alpha-DBL fold. This suggests that ID2 could be a functional domain. We also identify regions of VAR2CSA present on the surface of native VAR2CSA by comparing reactivity of plasma containing anti-VAR2CSA antibodies in peptide array experiments before and after incubation with native VAR2CSA. By this method we identify conserved VAR2CSA regions targeted by antibodies that react with the native molecule expressed on infected erythrocytes. By mapping the data onto the DBL models we present evidence suggesting that the S1+S2 DBL sub-domains are generally surface-exposed in most domains, whereas the S3 sub-domains are less exposed in native VAR2CSA. These results comprise an important step towards understanding the structure of VAR2CSA on the surface of CSA-binding infected erythrocytes.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/18282103/?tool=EBI
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