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Plasmodium falciparum Heterochromatin Protein 1 Marks Genomic Loci Linked to Phenotypic Variation of Exported Virulence Factors

Epigenetic processes are the main conductors of phenotypic variation in eukaryotes. The malaria parasite Plasmodium falciparum employs antigenic variation of the major surface antigen PfEMP1, encoded by 60 var genes, to evade acquired immune responses. Antigenic variation of PfEMP1 occurs through in...

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Autores principales: Flueck, Christian, Bartfai, Richard, Volz, Jennifer, Niederwieser, Igor, Salcedo-Amaya, Adriana M., Alako, Blaise T. F., Ehlgen, Florian, Ralph, Stuart A., Cowman, Alan F., Bozdech, Zbynek, Stunnenberg, Hendrik G., Voss, Till S.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2731224/
https://www.ncbi.nlm.nih.gov/pubmed/19730695
http://dx.doi.org/10.1371/journal.ppat.1000569
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author Flueck, Christian
Bartfai, Richard
Volz, Jennifer
Niederwieser, Igor
Salcedo-Amaya, Adriana M.
Alako, Blaise T. F.
Ehlgen, Florian
Ralph, Stuart A.
Cowman, Alan F.
Bozdech, Zbynek
Stunnenberg, Hendrik G.
Voss, Till S.
author_facet Flueck, Christian
Bartfai, Richard
Volz, Jennifer
Niederwieser, Igor
Salcedo-Amaya, Adriana M.
Alako, Blaise T. F.
Ehlgen, Florian
Ralph, Stuart A.
Cowman, Alan F.
Bozdech, Zbynek
Stunnenberg, Hendrik G.
Voss, Till S.
author_sort Flueck, Christian
collection PubMed
description Epigenetic processes are the main conductors of phenotypic variation in eukaryotes. The malaria parasite Plasmodium falciparum employs antigenic variation of the major surface antigen PfEMP1, encoded by 60 var genes, to evade acquired immune responses. Antigenic variation of PfEMP1 occurs through in situ switches in mono-allelic var gene transcription, which is PfSIR2-dependent and associated with the presence of repressive H3K9me3 marks at silenced loci. Here, we show that P. falciparum heterochromatin protein 1 (PfHP1) binds specifically to H3K9me3 but not to other repressive histone methyl marks. Based on nuclear fractionation and detailed immuno-localization assays, PfHP1 constitutes a major component of heterochromatin in perinuclear chromosome end clusters. High-resolution genome-wide chromatin immuno-precipitation demonstrates the striking association of PfHP1 with virulence gene arrays in subtelomeric and chromosome-internal islands and a high correlation with previously mapped H3K9me3 marks. These include not only var genes, but also the majority of P. falciparum lineage-specific gene families coding for exported proteins involved in host–parasite interactions. In addition, we identified a number of PfHP1-bound genes that were not enriched in H3K9me3, many of which code for proteins expressed during invasion or at different life cycle stages. Interestingly, PfHP1 is absent from centromeric regions, implying important differences in centromere biology between P. falciparum and its human host. Over-expression of PfHP1 results in an enhancement of variegated expression and highlights the presence of well-defined heterochromatic boundaries. In summary, we identify PfHP1 as a major effector of virulence gene silencing and phenotypic variation. Our results are instrumental for our understanding of this widely used survival strategy in unicellular pathogens.
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spelling pubmed-27312242009-09-04 Plasmodium falciparum Heterochromatin Protein 1 Marks Genomic Loci Linked to Phenotypic Variation of Exported Virulence Factors Flueck, Christian Bartfai, Richard Volz, Jennifer Niederwieser, Igor Salcedo-Amaya, Adriana M. Alako, Blaise T. F. Ehlgen, Florian Ralph, Stuart A. Cowman, Alan F. Bozdech, Zbynek Stunnenberg, Hendrik G. Voss, Till S. PLoS Pathog Research Article Epigenetic processes are the main conductors of phenotypic variation in eukaryotes. The malaria parasite Plasmodium falciparum employs antigenic variation of the major surface antigen PfEMP1, encoded by 60 var genes, to evade acquired immune responses. Antigenic variation of PfEMP1 occurs through in situ switches in mono-allelic var gene transcription, which is PfSIR2-dependent and associated with the presence of repressive H3K9me3 marks at silenced loci. Here, we show that P. falciparum heterochromatin protein 1 (PfHP1) binds specifically to H3K9me3 but not to other repressive histone methyl marks. Based on nuclear fractionation and detailed immuno-localization assays, PfHP1 constitutes a major component of heterochromatin in perinuclear chromosome end clusters. High-resolution genome-wide chromatin immuno-precipitation demonstrates the striking association of PfHP1 with virulence gene arrays in subtelomeric and chromosome-internal islands and a high correlation with previously mapped H3K9me3 marks. These include not only var genes, but also the majority of P. falciparum lineage-specific gene families coding for exported proteins involved in host–parasite interactions. In addition, we identified a number of PfHP1-bound genes that were not enriched in H3K9me3, many of which code for proteins expressed during invasion or at different life cycle stages. Interestingly, PfHP1 is absent from centromeric regions, implying important differences in centromere biology between P. falciparum and its human host. Over-expression of PfHP1 results in an enhancement of variegated expression and highlights the presence of well-defined heterochromatic boundaries. In summary, we identify PfHP1 as a major effector of virulence gene silencing and phenotypic variation. Our results are instrumental for our understanding of this widely used survival strategy in unicellular pathogens. Public Library of Science 2009-09-04 /pmc/articles/PMC2731224/ /pubmed/19730695 http://dx.doi.org/10.1371/journal.ppat.1000569 Text en Flueck et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Flueck, Christian
Bartfai, Richard
Volz, Jennifer
Niederwieser, Igor
Salcedo-Amaya, Adriana M.
Alako, Blaise T. F.
Ehlgen, Florian
Ralph, Stuart A.
Cowman, Alan F.
Bozdech, Zbynek
Stunnenberg, Hendrik G.
Voss, Till S.
Plasmodium falciparum Heterochromatin Protein 1 Marks Genomic Loci Linked to Phenotypic Variation of Exported Virulence Factors
title Plasmodium falciparum Heterochromatin Protein 1 Marks Genomic Loci Linked to Phenotypic Variation of Exported Virulence Factors
title_full Plasmodium falciparum Heterochromatin Protein 1 Marks Genomic Loci Linked to Phenotypic Variation of Exported Virulence Factors
title_fullStr Plasmodium falciparum Heterochromatin Protein 1 Marks Genomic Loci Linked to Phenotypic Variation of Exported Virulence Factors
title_full_unstemmed Plasmodium falciparum Heterochromatin Protein 1 Marks Genomic Loci Linked to Phenotypic Variation of Exported Virulence Factors
title_short Plasmodium falciparum Heterochromatin Protein 1 Marks Genomic Loci Linked to Phenotypic Variation of Exported Virulence Factors
title_sort plasmodium falciparum heterochromatin protein 1 marks genomic loci linked to phenotypic variation of exported virulence factors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2731224/
https://www.ncbi.nlm.nih.gov/pubmed/19730695
http://dx.doi.org/10.1371/journal.ppat.1000569
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