Distinct effects on the secretion of MTRAP and AMA1 in Plasmodium yoelii following deletion of acylated pleckstrin homology domain-containing protein.
Erythrocyte invasion
Exocytosis
Malaria
Microneme
PH-domain containing protein
Journal
Parasitology international
ISSN: 1873-0329
Titre abrégé: Parasitol Int
Pays: Netherlands
ID NLM: 9708549
Informations de publication
Date de publication:
Feb 2022
Feb 2022
Historique:
received:
19
09
2021
revised:
29
09
2021
accepted:
04
10
2021
pubmed:
11
10
2021
medline:
24
11
2021
entrez:
10
10
2021
Statut:
ppublish
Résumé
Plasmodium, the causative agents of malaria, are obligate intracellular organisms. In humans, pathogenesis is caused by the blood stage parasite, which multiplies within erythrocytes, thus erythrocyte invasion is an essential developmental step. Merozoite form parasites released into the blood stream coordinately secrets a panel of proteins from the microneme secretory organelles for gliding motility, establishment of a tight junction with a target naive erythrocyte, and subsequent internalization. A protein identified in Toxoplasma gondii facilitates microneme fusion with the plasma membrane for exocytosis; namely, acylated pleckstrin homology domain-containing protein (APH). To obtain insight into the differential microneme discharge by malaria parasites, in this study we analyzed the consequences of APH deletion in the rodent malaria model, Plasmodium yoelii, using a DiCre-based inducible knockout method. We found that APH deletion resulted in a reduction in parasite asexual growth and erythrocyte invasion, with some parasites retaining the ability to invade and grow without APH. APH deletion impaired the secretion of microneme proteins, MTRAP and AMA1, and upon contact with erythrocytes the secretion of MTRAP, but not AMA1, was observed. APH-deleted merozoites were able to attach to and deform erythrocytes, consistent with the observed MTRAP secretion. Tight junctions were formed, but echinocytosis after merozoite internalization into erythrocytes was significantly reduced, consistent with the observed absence of AMA1 secretion. Together with our observation that APH largely colocalized with MTRAP, but less with AMA1, we propose that APH is directly involved in MTRAP secretion; whereas any role of APH in AMA1 secretion is indirect in Plasmodium.
Identifiants
pubmed: 34628068
pii: S1383-5769(21)00197-5
doi: 10.1016/j.parint.2021.102479
pii:
doi:
Substances chimiques
Antigens, Protozoan
0
Protozoan Proteins
0
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
102479Informations de copyright
Copyright © 2021 The Authors. Published by Elsevier B.V. All rights reserved.