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Updated: May 7, 2026

Analysis of Single-cell Gene Transcription by RNA Fluorescent In Situ Hybridization (FISH)
Published on: October 7, 2012
Universal features of post-transcriptional gene regulation are critical for Plasmodium zygote development
Gunnar R Mair1, Edwin Lasonder, Lindsey S Garver
1Leiden Malaria Research Group, Department of Parasitology, Centre for Infectious Diseases, Leiden University Medical Center, Leiden, The Netherlands. gmair@fm.ul.pt
Abstract:
A universal feature of metazoan sexual development is the generation of oocyte P granules that withhold certain mRNA species from translation to provide coding potential for proteins during early post-fertilization development. Stabilisation of translationally quiescent mRNA pools in female Plasmodium gametocytes depends on the RNA helicase DOZI, but the molecular machinery involved in the silencing of transcripts in these protozoans is unknown. Using affinity purification coupled with mass-spectrometric analysis we identify a messenger ribonucleoprotein (mRNP) from Plasmodium berghei gametocytes defined by DOZI and the Sm-like factor CITH (homolog of worm CAR-I and fly Trailer Hitch). This mRNP includes 16 major factors, including proteins with homologies to components of metazoan P granules and archaeal proteins. Containing translationally silent transcripts, this mRNP integrates eIF4E and poly(A)-binding protein but excludes P body RNA degradation factors and translation-initiation promoting eIF4G. Gene deletion mutants of 2 core components of this mRNP (DOZI and CITH) are fertilization-competent, but zygotes fail to develop into ookinetes in a female gametocyte-mutant fashion. Through RNA-immunoprecipitation and global expression profiling of CITH-KO mutants we highlight CITH as a crucial repressor of maternally supplied mRNAs. Our data define Plasmodium P granules as an ancient mRNP whose protein core has remained evolutionarily conserved from single-cell organisms to germ cells of multi-cellular animals and stores translationally silent mRNAs that are critical for early post-fertilization development during the initial stages of mosquito infection. Therefore, translational repression may offer avenues as a target for the generation of transmission blocking strategies and contribute to limiting the spread of malaria.
Insights
Plasmodium P granules, containing translationally silent mRNAs, are crucial for early development after fertilization. Key proteins DOZI and CITH regulate these granules, impacting parasite transmission and offering potential malaria control targets.
Area of Science:
- Molecular Parasitology
- RNA Biology
- Sexual Development
Background:
- Metazoan oocytes utilize P granules to store untranslated mRNAs for early development.
- The mechanism of mRNA silencing in Plasmodium gametocytes, dependent on DOZI, remains unclear.
- Understanding Plasmodium transcript regulation is vital for developing transmission-blocking strategies against malaria.
Purpose of the Study:
- To identify the molecular machinery responsible for transcript silencing in Plasmodium gametocytes.
- To characterize the composition and function of Plasmodium P granules.
- To investigate the role of DOZI and CITH in early post-fertilization development and parasite transmission.
Main Methods:
- Affinity purification coupled with mass-spectrometric analysis to identify mRNP components.
- Generation and analysis of gene deletion mutants (DOZI and CITH).
- RNA-immunoprecipitation and global expression profiling of CITH-knockout mutants.
Main Results:
- Identified a Plasmodium P granule mRNP complex containing DOZI, CITH, and 16 other factors, including homologs of metazoan P granule proteins.
- This mRNP sequesters translationally silent transcripts, integrating eIF4E and poly(A)-binding protein while excluding translation initiation and degradation factors.
- DOZI and CITH are essential for zygote development into ookinetes, with CITH acting as a crucial repressor of maternal mRNAs.
Conclusions:
- Plasmodium P granules represent an evolutionarily conserved mRNP complex crucial for early post-fertilization development.
- The identified mRNP machinery regulates the storage and silencing of maternal mRNAs.
- Targeting translational repression mechanisms, like those involving DOZI and CITH, could lead to novel malaria transmission-blocking strategies.
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