Cargando…

PfAP2-MRP DNA-binding protein is a master regulator of parasite pathogenesis during malaria parasite blood stages

Malaria pathogenicity results from the parasite’s ability to invade, multiply within and then egress from the host red blood cell (RBC). Infected RBCs are remodeled, expressing antigenic variant proteins (such as PfEMP1, coded by the var gene family) for immune evasion and survival. These processes...

Descripción completa

Detalles Bibliográficos
Autores principales: Subudhi, Amit Kumar, Green, Judith L., Satyam, Rohit, Lenz, Todd, Salunke, Rahul P., Shuaib, Muhammad, Isaioglou, Ioannis, Abel, Steven, Gupta, Mohit, Esau, Luke, Mourier, Tobias, Nugmanova, Raushan, Mfarrej, Sara, Sivapurkar, Rupali, Stead, Zenaida, Rached, Fathia Ben, Otswal, Yogesh, Sougrat, Rachid, Dada, Ashraf, Kadamany, Abdullah Fuaad, Fischle, Wolfgang, Merzaban, Jasmeen, Knuepfer, Ellen, Ferguson, David J.P., Gupta, Ishaan, Le Roch, Karine G., Holder, Anthony A., Pain, Arnab
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10245809/
https://www.ncbi.nlm.nih.gov/pubmed/37293082
http://dx.doi.org/10.1101/2023.05.23.541898
_version_ 1785054928463462400
author Subudhi, Amit Kumar
Green, Judith L.
Satyam, Rohit
Lenz, Todd
Salunke, Rahul P.
Shuaib, Muhammad
Isaioglou, Ioannis
Abel, Steven
Gupta, Mohit
Esau, Luke
Mourier, Tobias
Nugmanova, Raushan
Mfarrej, Sara
Sivapurkar, Rupali
Stead, Zenaida
Rached, Fathia Ben
Otswal, Yogesh
Sougrat, Rachid
Dada, Ashraf
Kadamany, Abdullah Fuaad
Fischle, Wolfgang
Merzaban, Jasmeen
Knuepfer, Ellen
Ferguson, David J.P.
Gupta, Ishaan
Le Roch, Karine G.
Holder, Anthony A.
Pain, Arnab
author_facet Subudhi, Amit Kumar
Green, Judith L.
Satyam, Rohit
Lenz, Todd
Salunke, Rahul P.
Shuaib, Muhammad
Isaioglou, Ioannis
Abel, Steven
Gupta, Mohit
Esau, Luke
Mourier, Tobias
Nugmanova, Raushan
Mfarrej, Sara
Sivapurkar, Rupali
Stead, Zenaida
Rached, Fathia Ben
Otswal, Yogesh
Sougrat, Rachid
Dada, Ashraf
Kadamany, Abdullah Fuaad
Fischle, Wolfgang
Merzaban, Jasmeen
Knuepfer, Ellen
Ferguson, David J.P.
Gupta, Ishaan
Le Roch, Karine G.
Holder, Anthony A.
Pain, Arnab
author_sort Subudhi, Amit Kumar
collection PubMed
description Malaria pathogenicity results from the parasite’s ability to invade, multiply within and then egress from the host red blood cell (RBC). Infected RBCs are remodeled, expressing antigenic variant proteins (such as PfEMP1, coded by the var gene family) for immune evasion and survival. These processes require the concerted actions of many proteins, but the molecular regulation is poorly understood. We have characterized an essential Plasmodium specific Apicomplexan AP2 (ApiAP2) transcription factor in Plasmodium falciparum (PfAP2-MRP; Master Regulator of Pathogenesis) during the intraerythrocytic developmental cycle (IDC). An inducible gene knockout approach showed that PfAP2-MRP is essential for development during the trophozoite stage, and critical for var gene regulation, merozoite development and parasite egress. ChIP-seq experiments performed at 16 hour post invasion (h.p.i.) and 40 h.p.i. matching the two peaks of PfAP2-MRP expression, demonstrate binding of PfAP2-MRP to the promoters of genes controlling trophozoite development and host cell remodeling at 16 h.p.i. and antigenic variation and pathogenicity at 40 h.p.i. Using single-cell RNA-seq and fluorescence-activated cell sorting, we show de-repression of most var genes in Δpfap2-mrp parasites that express multiple PfEMP1 proteins on the surface of infected RBCs. In addition, the Δpfap2-mrp parasites overexpress several early gametocyte marker genes at both 16 and 40 h.p.i., indicating a regulatory role in the sexual stage conversion. Using the Chromosomes Conformation Capture experiment (Hi-C), we demonstrate that deletion of PfAP2-MRP results in significant reduction of both intra-chromosomal and inter-chromosomal interactions in heterochromatin clusters. We conclude that PfAP2-MRP is a vital upstream transcriptional regulator controlling essential processes in two distinct developmental stages during the IDC that include parasite growth, chromatin structure and var gene expression.
format Online
Article
Text
id pubmed-10245809
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Cold Spring Harbor Laboratory
record_format MEDLINE/PubMed
spelling pubmed-102458092023-06-08 PfAP2-MRP DNA-binding protein is a master regulator of parasite pathogenesis during malaria parasite blood stages Subudhi, Amit Kumar Green, Judith L. Satyam, Rohit Lenz, Todd Salunke, Rahul P. Shuaib, Muhammad Isaioglou, Ioannis Abel, Steven Gupta, Mohit Esau, Luke Mourier, Tobias Nugmanova, Raushan Mfarrej, Sara Sivapurkar, Rupali Stead, Zenaida Rached, Fathia Ben Otswal, Yogesh Sougrat, Rachid Dada, Ashraf Kadamany, Abdullah Fuaad Fischle, Wolfgang Merzaban, Jasmeen Knuepfer, Ellen Ferguson, David J.P. Gupta, Ishaan Le Roch, Karine G. Holder, Anthony A. Pain, Arnab bioRxiv Article Malaria pathogenicity results from the parasite’s ability to invade, multiply within and then egress from the host red blood cell (RBC). Infected RBCs are remodeled, expressing antigenic variant proteins (such as PfEMP1, coded by the var gene family) for immune evasion and survival. These processes require the concerted actions of many proteins, but the molecular regulation is poorly understood. We have characterized an essential Plasmodium specific Apicomplexan AP2 (ApiAP2) transcription factor in Plasmodium falciparum (PfAP2-MRP; Master Regulator of Pathogenesis) during the intraerythrocytic developmental cycle (IDC). An inducible gene knockout approach showed that PfAP2-MRP is essential for development during the trophozoite stage, and critical for var gene regulation, merozoite development and parasite egress. ChIP-seq experiments performed at 16 hour post invasion (h.p.i.) and 40 h.p.i. matching the two peaks of PfAP2-MRP expression, demonstrate binding of PfAP2-MRP to the promoters of genes controlling trophozoite development and host cell remodeling at 16 h.p.i. and antigenic variation and pathogenicity at 40 h.p.i. Using single-cell RNA-seq and fluorescence-activated cell sorting, we show de-repression of most var genes in Δpfap2-mrp parasites that express multiple PfEMP1 proteins on the surface of infected RBCs. In addition, the Δpfap2-mrp parasites overexpress several early gametocyte marker genes at both 16 and 40 h.p.i., indicating a regulatory role in the sexual stage conversion. Using the Chromosomes Conformation Capture experiment (Hi-C), we demonstrate that deletion of PfAP2-MRP results in significant reduction of both intra-chromosomal and inter-chromosomal interactions in heterochromatin clusters. We conclude that PfAP2-MRP is a vital upstream transcriptional regulator controlling essential processes in two distinct developmental stages during the IDC that include parasite growth, chromatin structure and var gene expression. Cold Spring Harbor Laboratory 2023-05-24 /pmc/articles/PMC10245809/ /pubmed/37293082 http://dx.doi.org/10.1101/2023.05.23.541898 Text en https://creativecommons.org/licenses/by-nd/4.0/This work is licensed under a Creative Commons Attribution-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, and only so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Subudhi, Amit Kumar
Green, Judith L.
Satyam, Rohit
Lenz, Todd
Salunke, Rahul P.
Shuaib, Muhammad
Isaioglou, Ioannis
Abel, Steven
Gupta, Mohit
Esau, Luke
Mourier, Tobias
Nugmanova, Raushan
Mfarrej, Sara
Sivapurkar, Rupali
Stead, Zenaida
Rached, Fathia Ben
Otswal, Yogesh
Sougrat, Rachid
Dada, Ashraf
Kadamany, Abdullah Fuaad
Fischle, Wolfgang
Merzaban, Jasmeen
Knuepfer, Ellen
Ferguson, David J.P.
Gupta, Ishaan
Le Roch, Karine G.
Holder, Anthony A.
Pain, Arnab
PfAP2-MRP DNA-binding protein is a master regulator of parasite pathogenesis during malaria parasite blood stages
title PfAP2-MRP DNA-binding protein is a master regulator of parasite pathogenesis during malaria parasite blood stages
title_full PfAP2-MRP DNA-binding protein is a master regulator of parasite pathogenesis during malaria parasite blood stages
title_fullStr PfAP2-MRP DNA-binding protein is a master regulator of parasite pathogenesis during malaria parasite blood stages
title_full_unstemmed PfAP2-MRP DNA-binding protein is a master regulator of parasite pathogenesis during malaria parasite blood stages
title_short PfAP2-MRP DNA-binding protein is a master regulator of parasite pathogenesis during malaria parasite blood stages
title_sort pfap2-mrp dna-binding protein is a master regulator of parasite pathogenesis during malaria parasite blood stages
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10245809/
https://www.ncbi.nlm.nih.gov/pubmed/37293082
http://dx.doi.org/10.1101/2023.05.23.541898
work_keys_str_mv AT subudhiamitkumar pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT greenjudithl pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT satyamrohit pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT lenztodd pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT salunkerahulp pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT shuaibmuhammad pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT isaioglouioannis pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT abelsteven pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT guptamohit pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT esauluke pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT mouriertobias pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT nugmanovaraushan pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT mfarrejsara pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT sivapurkarrupali pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT steadzenaida pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT rachedfathiaben pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT otswalyogesh pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT sougratrachid pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT dadaashraf pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT kadamanyabdullahfuaad pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT fischlewolfgang pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT merzabanjasmeen pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT knuepferellen pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT fergusondavidjp pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT guptaishaan pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT lerochkarineg pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT holderanthonya pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages
AT painarnab pfap2mrpdnabindingproteinisamasterregulatorofparasitepathogenesisduringmalariaparasitebloodstages