Molecular insights into the interaction between Plasmodium falciparum apical membrane antigen 1 and an invasion-inhibitory peptide.

Apical membrane antigen 1 (AMA1) of the human malaria parasite Plasmodium falciparum has been implicated in invasion of the host erythrocyte. It interacts with malarial rhoptry neck (RON) proteins in the moving junction that forms between the host cell and the invading parasite. Agents that block th...

Full description

Bibliographic Details
Main Authors: Geqing Wang, Christopher A MacRaild, Biswaranjan Mohanty, Mehdi Mobli, Nathan P Cowieson, Robin F Anders, Jamie S Simpson, Sheena McGowan, Raymond S Norton, Martin J Scanlon
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0109674
id doaj-a51fd55313c34feba2785836de28f0c3
record_format Article
spelling doaj-a51fd55313c34feba2785836de28f0c32021-06-19T04:52:59ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01910e10967410.1371/journal.pone.0109674Molecular insights into the interaction between Plasmodium falciparum apical membrane antigen 1 and an invasion-inhibitory peptide.Geqing WangChristopher A MacRaildBiswaranjan MohantyMehdi MobliNathan P CowiesonRobin F AndersJamie S SimpsonSheena McGowanRaymond S NortonMartin J ScanlonApical membrane antigen 1 (AMA1) of the human malaria parasite Plasmodium falciparum has been implicated in invasion of the host erythrocyte. It interacts with malarial rhoptry neck (RON) proteins in the moving junction that forms between the host cell and the invading parasite. Agents that block this interaction inhibit invasion and may serve as promising leads for anti-malarial drug development. The invasion-inhibitory peptide R1 binds to a hydrophobic cleft on AMA1, which is an attractive target site for small molecules that block parasite invasion. In this work, truncation and mutational analyses show that Phe5-Phe9, Phe12 and Arg15 in R1 are the most important residues for high affinity binding to AMA1. These residues interact with two well-defined binding hot spots on AMA1. Computational solvent mapping reveals that one of these hot spots is suitable for small molecule targeting. We also confirm that R1 in solution binds to AMA1 with 1:1 stoichiometry and adopts a secondary structure consistent with the major form of R1 observed in the crystal structure of the complex. Our results provide a basis for designing high affinity inhibitors of the AMA1-RON2 interaction.https://doi.org/10.1371/journal.pone.0109674
collection DOAJ
language English
format Article
sources DOAJ
author Geqing Wang
Christopher A MacRaild
Biswaranjan Mohanty
Mehdi Mobli
Nathan P Cowieson
Robin F Anders
Jamie S Simpson
Sheena McGowan
Raymond S Norton
Martin J Scanlon
spellingShingle Geqing Wang
Christopher A MacRaild
Biswaranjan Mohanty
Mehdi Mobli
Nathan P Cowieson
Robin F Anders
Jamie S Simpson
Sheena McGowan
Raymond S Norton
Martin J Scanlon
Molecular insights into the interaction between Plasmodium falciparum apical membrane antigen 1 and an invasion-inhibitory peptide.
PLoS ONE
author_facet Geqing Wang
Christopher A MacRaild
Biswaranjan Mohanty
Mehdi Mobli
Nathan P Cowieson
Robin F Anders
Jamie S Simpson
Sheena McGowan
Raymond S Norton
Martin J Scanlon
author_sort Geqing Wang
title Molecular insights into the interaction between Plasmodium falciparum apical membrane antigen 1 and an invasion-inhibitory peptide.
title_short Molecular insights into the interaction between Plasmodium falciparum apical membrane antigen 1 and an invasion-inhibitory peptide.
title_full Molecular insights into the interaction between Plasmodium falciparum apical membrane antigen 1 and an invasion-inhibitory peptide.
title_fullStr Molecular insights into the interaction between Plasmodium falciparum apical membrane antigen 1 and an invasion-inhibitory peptide.
title_full_unstemmed Molecular insights into the interaction between Plasmodium falciparum apical membrane antigen 1 and an invasion-inhibitory peptide.
title_sort molecular insights into the interaction between plasmodium falciparum apical membrane antigen 1 and an invasion-inhibitory peptide.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Apical membrane antigen 1 (AMA1) of the human malaria parasite Plasmodium falciparum has been implicated in invasion of the host erythrocyte. It interacts with malarial rhoptry neck (RON) proteins in the moving junction that forms between the host cell and the invading parasite. Agents that block this interaction inhibit invasion and may serve as promising leads for anti-malarial drug development. The invasion-inhibitory peptide R1 binds to a hydrophobic cleft on AMA1, which is an attractive target site for small molecules that block parasite invasion. In this work, truncation and mutational analyses show that Phe5-Phe9, Phe12 and Arg15 in R1 are the most important residues for high affinity binding to AMA1. These residues interact with two well-defined binding hot spots on AMA1. Computational solvent mapping reveals that one of these hot spots is suitable for small molecule targeting. We also confirm that R1 in solution binds to AMA1 with 1:1 stoichiometry and adopts a secondary structure consistent with the major form of R1 observed in the crystal structure of the complex. Our results provide a basis for designing high affinity inhibitors of the AMA1-RON2 interaction.
url https://doi.org/10.1371/journal.pone.0109674
work_keys_str_mv AT geqingwang molecularinsightsintotheinteractionbetweenplasmodiumfalciparumapicalmembraneantigen1andaninvasioninhibitorypeptide
AT christopheramacraild molecularinsightsintotheinteractionbetweenplasmodiumfalciparumapicalmembraneantigen1andaninvasioninhibitorypeptide
AT biswaranjanmohanty molecularinsightsintotheinteractionbetweenplasmodiumfalciparumapicalmembraneantigen1andaninvasioninhibitorypeptide
AT mehdimobli molecularinsightsintotheinteractionbetweenplasmodiumfalciparumapicalmembraneantigen1andaninvasioninhibitorypeptide
AT nathanpcowieson molecularinsightsintotheinteractionbetweenplasmodiumfalciparumapicalmembraneantigen1andaninvasioninhibitorypeptide
AT robinfanders molecularinsightsintotheinteractionbetweenplasmodiumfalciparumapicalmembraneantigen1andaninvasioninhibitorypeptide
AT jamiessimpson molecularinsightsintotheinteractionbetweenplasmodiumfalciparumapicalmembraneantigen1andaninvasioninhibitorypeptide
AT sheenamcgowan molecularinsightsintotheinteractionbetweenplasmodiumfalciparumapicalmembraneantigen1andaninvasioninhibitorypeptide
AT raymondsnorton molecularinsightsintotheinteractionbetweenplasmodiumfalciparumapicalmembraneantigen1andaninvasioninhibitorypeptide
AT martinjscanlon molecularinsightsintotheinteractionbetweenplasmodiumfalciparumapicalmembraneantigen1andaninvasioninhibitorypeptide
_version_ 1721371898365870080