A Sequence in Subdomain 2 of DBL1α of Plasmodium falciparum Erythrocyte Membrane Protein 1 Induces Strain Transcending Antibodies

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A Sequence in Subdomain 2 of DBL1α of Plasmodium falciparum Erythrocyte Membrane Protein 1 Induces Strain Transcending Antibodies. / Blomqvist, Karin; Albrecht, Letusa; Quintana, Maria del Pilar; Angeletti, Davide; Joannin, Nicolas; Chêne, Arnaud; Moll, Kirsten; Wahlgren, Mats.

In: PLoS ONE, Vol. 8, No. 1, e52679, 15.01.2013.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Blomqvist, K, Albrecht, L, Quintana, MDP, Angeletti, D, Joannin, N, Chêne, A, Moll, K & Wahlgren, M 2013, 'A Sequence in Subdomain 2 of DBL1α of Plasmodium falciparum Erythrocyte Membrane Protein 1 Induces Strain Transcending Antibodies', PLoS ONE, vol. 8, no. 1, e52679. https://doi.org/10.1371/journal.pone.0052679

APA

Blomqvist, K., Albrecht, L., Quintana, M. D. P., Angeletti, D., Joannin, N., Chêne, A., Moll, K., & Wahlgren, M. (2013). A Sequence in Subdomain 2 of DBL1α of Plasmodium falciparum Erythrocyte Membrane Protein 1 Induces Strain Transcending Antibodies. PLoS ONE, 8(1), [e52679]. https://doi.org/10.1371/journal.pone.0052679

Vancouver

Blomqvist K, Albrecht L, Quintana MDP, Angeletti D, Joannin N, Chêne A et al. A Sequence in Subdomain 2 of DBL1α of Plasmodium falciparum Erythrocyte Membrane Protein 1 Induces Strain Transcending Antibodies. PLoS ONE. 2013 Jan 15;8(1). e52679. https://doi.org/10.1371/journal.pone.0052679

Author

Blomqvist, Karin ; Albrecht, Letusa ; Quintana, Maria del Pilar ; Angeletti, Davide ; Joannin, Nicolas ; Chêne, Arnaud ; Moll, Kirsten ; Wahlgren, Mats. / A Sequence in Subdomain 2 of DBL1α of Plasmodium falciparum Erythrocyte Membrane Protein 1 Induces Strain Transcending Antibodies. In: PLoS ONE. 2013 ; Vol. 8, No. 1.

Bibtex

@article{3036fe1214b245cbbaadfb98c4357dcf,
title = "A Sequence in Subdomain 2 of DBL1α of Plasmodium falciparum Erythrocyte Membrane Protein 1 Induces Strain Transcending Antibodies",
abstract = "Immunity to severe malaria is the first level of immunity acquired to Plasmodium falciparum. Antibodies to the variant antigen PfEMP1 (P. falciparum erythrocyte membrane protein 1) present at the surface of the parasitized red blood cell (pRBC) confer protection by blocking microvascular sequestration. Here we have generated antibodies to peptide sequences of subdomain 2 of PfEMP1-DBL1α previously identified to be associated with severe or mild malaria. A set of sera generated to the amino acid sequence KLQTLTLHQVREYWWALNRKEVWKA, containing the motif ALNRKE, stained the live pRBC. 50% of parasites tested (7/14) were positive both in flow cytometry and immunofluorescence assays with live pRBCs including both laboratory strains and in vitro adapted clinical isolates. Antibodies that reacted selectively with the sequence REYWWALNRKEVWKA in a 15-mer peptide array of DBL1α-domains were also found to react with the pRBC surface. By utilizing a peptide array to map the binding properties of the elicited anti-DBL1α antibodies, the amino acids WxxNRx were found essential for antibody binding. Complementary experiments using 135 degenerate RDSM peptide sequences obtained from 93 Ugandan patient-isolates showed that antibody binding occurred when the amino acids WxLNRKE/D were present in the peptide. The data suggests that the ALNRKE sequence motif, associated with severe malaria, induces strain-transcending antibodies that react with the pRBC surface.",
author = "Karin Blomqvist and Letusa Albrecht and Quintana, {Maria del Pilar} and Davide Angeletti and Nicolas Joannin and Arnaud Ch{\^e}ne and Kirsten Moll and Mats Wahlgren",
year = "2013",
month = jan,
day = "15",
doi = "10.1371/journal.pone.0052679",
language = "English",
volume = "8",
journal = "PLoS ONE",
issn = "1932-6203",
publisher = "Public Library of Science",
number = "1",

}

RIS

TY - JOUR

T1 - A Sequence in Subdomain 2 of DBL1α of Plasmodium falciparum Erythrocyte Membrane Protein 1 Induces Strain Transcending Antibodies

AU - Blomqvist, Karin

AU - Albrecht, Letusa

AU - Quintana, Maria del Pilar

AU - Angeletti, Davide

AU - Joannin, Nicolas

AU - Chêne, Arnaud

AU - Moll, Kirsten

AU - Wahlgren, Mats

PY - 2013/1/15

Y1 - 2013/1/15

N2 - Immunity to severe malaria is the first level of immunity acquired to Plasmodium falciparum. Antibodies to the variant antigen PfEMP1 (P. falciparum erythrocyte membrane protein 1) present at the surface of the parasitized red blood cell (pRBC) confer protection by blocking microvascular sequestration. Here we have generated antibodies to peptide sequences of subdomain 2 of PfEMP1-DBL1α previously identified to be associated with severe or mild malaria. A set of sera generated to the amino acid sequence KLQTLTLHQVREYWWALNRKEVWKA, containing the motif ALNRKE, stained the live pRBC. 50% of parasites tested (7/14) were positive both in flow cytometry and immunofluorescence assays with live pRBCs including both laboratory strains and in vitro adapted clinical isolates. Antibodies that reacted selectively with the sequence REYWWALNRKEVWKA in a 15-mer peptide array of DBL1α-domains were also found to react with the pRBC surface. By utilizing a peptide array to map the binding properties of the elicited anti-DBL1α antibodies, the amino acids WxxNRx were found essential for antibody binding. Complementary experiments using 135 degenerate RDSM peptide sequences obtained from 93 Ugandan patient-isolates showed that antibody binding occurred when the amino acids WxLNRKE/D were present in the peptide. The data suggests that the ALNRKE sequence motif, associated with severe malaria, induces strain-transcending antibodies that react with the pRBC surface.

AB - Immunity to severe malaria is the first level of immunity acquired to Plasmodium falciparum. Antibodies to the variant antigen PfEMP1 (P. falciparum erythrocyte membrane protein 1) present at the surface of the parasitized red blood cell (pRBC) confer protection by blocking microvascular sequestration. Here we have generated antibodies to peptide sequences of subdomain 2 of PfEMP1-DBL1α previously identified to be associated with severe or mild malaria. A set of sera generated to the amino acid sequence KLQTLTLHQVREYWWALNRKEVWKA, containing the motif ALNRKE, stained the live pRBC. 50% of parasites tested (7/14) were positive both in flow cytometry and immunofluorescence assays with live pRBCs including both laboratory strains and in vitro adapted clinical isolates. Antibodies that reacted selectively with the sequence REYWWALNRKEVWKA in a 15-mer peptide array of DBL1α-domains were also found to react with the pRBC surface. By utilizing a peptide array to map the binding properties of the elicited anti-DBL1α antibodies, the amino acids WxxNRx were found essential for antibody binding. Complementary experiments using 135 degenerate RDSM peptide sequences obtained from 93 Ugandan patient-isolates showed that antibody binding occurred when the amino acids WxLNRKE/D were present in the peptide. The data suggests that the ALNRKE sequence motif, associated with severe malaria, induces strain-transcending antibodies that react with the pRBC surface.

U2 - 10.1371/journal.pone.0052679

DO - 10.1371/journal.pone.0052679

M3 - Journal article

C2 - 23335956

AN - SCOPUS:84872406445

VL - 8

JO - PLoS ONE

JF - PLoS ONE

SN - 1932-6203

IS - 1

M1 - e52679

ER -

ID: 197729292