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Updated: May 15, 2026

Understanding the Development of Compensatory Pathways in a Mutant Malaria Parasite Harbouring Hypomorphic Allele of Plant-Like Kinases
Published on: November 22, 2024
Comprehensive histone phosphorylation analysis and identification of Pf14-3-3 protein as a histone H3 phosphorylation
Eeshita G Dastidar1, Kristina Dzeyk, Jeroen Krijgsveld
1Biology of Host-Parasite Interactions Unit, Institut Pasteur, Paris, France.
Abstract:
The important role of histone posttranslational modifications, particularly methylation and acetylation, in Plasmodium falciparum gene regulation has been established. However, the role of histone phosphorylation remains understudied. Here, we investigate histone phosphorylation utilizing liquid chromatography and tandem mass spectrometry to analyze histones extracted from asexual blood stages using two improved protocols to enhance preservation of PTMs. Enrichment for phosphopeptides lead to the detection of 14 histone phospho-modifications in P. falciparum. The majority of phosphorylation sites were observed at the N-terminal regions of various histones and were frequently observed adjacent to acetylated lysines. We also report the identification of one novel member of the P. falciparum histone phosphosite binding protein repertoire, Pf14-3-3I. Recombinant Pf14-3-3I protein bound to purified parasite histones. In silico structural analysis of Pf14-3-3 proteins revealed that residues responsible for binding to histone H3 S10ph and/or S28ph are conserved at the primary and the tertiary structure levels. Using a battery of H3 specific phosphopeptides, we demonstrate that Pf14-3-3I preferentially binds to H3S28ph over H3S10ph, independent of modification of neighbouring residues like H3S10phK14ac and H3S28phS32ph. Our data provide key insight into histone phosphorylation sites. The identification of a second member of the histone modification reading machinery suggests a widespread use of histone phosphorylation in the control of various nuclear processes in malaria parasites.
Insights
Histone phosphorylation in malaria parasites (Plasmodium falciparum) is understudied. This research identified 14 histone phosphorylation sites and a protein that binds them, revealing new insights into gene regulation.
Area of Science:
- Molecular Biology
- Parasitology
- Epigenetics
Background:
- Histone methylation and acetylation are known regulators of Plasmodium falciparum gene expression.
- Histone phosphorylation's role in Plasmodium falciparum remains largely unexplored.
Purpose of the Study:
- To investigate histone phosphorylation in Plasmodium falciparum asexual blood stages.
- To identify novel histone phosphorylation sites and associated binding proteins.
Main Methods:
- Liquid chromatography and tandem mass spectrometry were used to analyze PTMs in P. falciparum histones.
- Improved protocols were employed to enhance PTM preservation.
- Recombinant protein binding assays and in silico structural analysis were performed.
Main Results:
- 14 histone phospho-modifications were detected, primarily in N-terminal histone regions and adjacent to acetylated lysines.
- A novel protein, Pf14-3-3I, was identified as a histone phosphosite binding protein.
- Pf14-3-3I preferentially binds to H3S28ph over H3S10ph.
Conclusions:
- Histone phosphorylation is a significant regulatory mechanism in malaria parasites.
- The identification of Pf14-3-3I suggests a broader role for histone phosphorylation in nuclear processes.
- This study provides crucial insights into histone phosphorylation and its binding machinery in Plasmodium falciparum.
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