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RON12, a novel Plasmodium-specific rhoptry neck protein important for parasite proliferation

Apicomplexan parasites invade host cells by a conserved mechanism: parasite proteins are secreted from apical organelles, anchored in the host cell plasma membrane, and then interact with integral membrane proteins on the zoite surface to form the moving junction (MJ). The junction moves from the an...

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Autores principales: Knuepfer, Ellen, Suleyman, Oniz, Dluzewski, Anton R, Straschil, Ursula, O'Keeffe, Aisling H, Ogun, Solabomi A, Green, Judith L, Grainger, Munira, Tewari, Rita, Holder, Anthony A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3922828/
https://www.ncbi.nlm.nih.gov/pubmed/23937520
http://dx.doi.org/10.1111/cmi.12181
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author Knuepfer, Ellen
Suleyman, Oniz
Dluzewski, Anton R
Straschil, Ursula
O'Keeffe, Aisling H
Ogun, Solabomi A
Green, Judith L
Grainger, Munira
Tewari, Rita
Holder, Anthony A
author_facet Knuepfer, Ellen
Suleyman, Oniz
Dluzewski, Anton R
Straschil, Ursula
O'Keeffe, Aisling H
Ogun, Solabomi A
Green, Judith L
Grainger, Munira
Tewari, Rita
Holder, Anthony A
author_sort Knuepfer, Ellen
collection PubMed
description Apicomplexan parasites invade host cells by a conserved mechanism: parasite proteins are secreted from apical organelles, anchored in the host cell plasma membrane, and then interact with integral membrane proteins on the zoite surface to form the moving junction (MJ). The junction moves from the anterior to the posterior of the parasite resulting in parasite internalization into the host cell within a parasitophorous vacuole (PV). Conserved as well as coccidia-unique rhoptry neck proteins (RONs) have been described, some of which associate with the MJ. Here we report a novel RON, which we call RON12. RON12 is found only in Plasmodium and is highly conserved across the genus. RON12 lacks a membrane anchor and is a major soluble component of the nascent PV. The bulk of RON12 secretion happens late during invasion (after parasite internalization) allowing accumulation in the fully formed PV with a small proportion of RON12 also apparent occasionally in structures resembling the MJ. RON12, unlike most other RONs is not essential, but deletion of the gene does affect parasite proliferation. The data suggest that although the overall mechanism of invasion by Apicomplexanparasites is conserved, additional components depending on the parasite–host cell combination are required.
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spelling pubmed-39228282014-12-31 RON12, a novel Plasmodium-specific rhoptry neck protein important for parasite proliferation Knuepfer, Ellen Suleyman, Oniz Dluzewski, Anton R Straschil, Ursula O'Keeffe, Aisling H Ogun, Solabomi A Green, Judith L Grainger, Munira Tewari, Rita Holder, Anthony A Cell Microbiol Special Issue on Malaria Apicomplexan parasites invade host cells by a conserved mechanism: parasite proteins are secreted from apical organelles, anchored in the host cell plasma membrane, and then interact with integral membrane proteins on the zoite surface to form the moving junction (MJ). The junction moves from the anterior to the posterior of the parasite resulting in parasite internalization into the host cell within a parasitophorous vacuole (PV). Conserved as well as coccidia-unique rhoptry neck proteins (RONs) have been described, some of which associate with the MJ. Here we report a novel RON, which we call RON12. RON12 is found only in Plasmodium and is highly conserved across the genus. RON12 lacks a membrane anchor and is a major soluble component of the nascent PV. The bulk of RON12 secretion happens late during invasion (after parasite internalization) allowing accumulation in the fully formed PV with a small proportion of RON12 also apparent occasionally in structures resembling the MJ. RON12, unlike most other RONs is not essential, but deletion of the gene does affect parasite proliferation. The data suggest that although the overall mechanism of invasion by Apicomplexanparasites is conserved, additional components depending on the parasite–host cell combination are required. BlackWell Publishing Ltd 2014-05 2013-08-28 /pmc/articles/PMC3922828/ /pubmed/23937520 http://dx.doi.org/10.1111/cmi.12181 Text en Copyright © 2014 John Wiley & Sons Ltd http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Special Issue on Malaria
Knuepfer, Ellen
Suleyman, Oniz
Dluzewski, Anton R
Straschil, Ursula
O'Keeffe, Aisling H
Ogun, Solabomi A
Green, Judith L
Grainger, Munira
Tewari, Rita
Holder, Anthony A
RON12, a novel Plasmodium-specific rhoptry neck protein important for parasite proliferation
title RON12, a novel Plasmodium-specific rhoptry neck protein important for parasite proliferation
title_full RON12, a novel Plasmodium-specific rhoptry neck protein important for parasite proliferation
title_fullStr RON12, a novel Plasmodium-specific rhoptry neck protein important for parasite proliferation
title_full_unstemmed RON12, a novel Plasmodium-specific rhoptry neck protein important for parasite proliferation
title_short RON12, a novel Plasmodium-specific rhoptry neck protein important for parasite proliferation
title_sort ron12, a novel plasmodium-specific rhoptry neck protein important for parasite proliferation
topic Special Issue on Malaria
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3922828/
https://www.ncbi.nlm.nih.gov/pubmed/23937520
http://dx.doi.org/10.1111/cmi.12181
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