An apicoplast-localized GTPase is essential for Toxoplasma gondii survival
Michael B Griffith1, Morgan E Wagner1, Victoria L Robsinson1
1Department of Molecular and Cell Biology, University of Connecticut, Storrs, Connecticut, USA.
Abstract:
The apicoplast is an essential organelle found in Apicomplexa, a large phylum of intracellular eukaryotic pathogens. The apicoplast produces metabolites that are utilized for membrane biogenesis and energy production. A majority of apicoplast-resident proteins are encoded by the nuclear genome and are trafficked to the apicoplast and are referred to as nuclear-encoded and apicoplast-trafficked (NEAT) proteins. In this study, we characterized a NEAT protein named TgBipA, which is a homolog of the highly conserved prokaryotic translational GTPase BipA. BipA is essential for bacterial survival in stress conditions and functions through interactions with the prokaryotic ribosome, although its role is not fully understood. Through genetic knockouts of TgBipA and immunofluorescence imaging, we show that the loss of TgBipA results in apicoplast genome replication defects, disruption of NEAT trafficking, loss of the apicoplast, and ultimately parasite death. Furthermore, we show through comparative studies that this phenotype closely resembles the delayed death phenomenon observed when inhibiting apicoplast translation. Finally, we show that TgBipA is an active GTPase in vitro, and its GTP hydrolysis activity is critical for its cellular function. Our findings demonstrate that TgBipA is a GTPase that has an essential role in apicoplast maintenance, providing new insights into the cellular processes of the organelle.IMPORTANCEToxoplasma gondii, and many other parasites in the phylum Apicomplexa, are pathogens with significant medical and veterinary importance. Most Apicomplexa contain a non-photosynthetic plastid organelle named the apicoplast. This organelle produces essential metabolites, and perturbation of apicoplast function results in parasite death. The apicoplast contains bacterial-like pathways for apicoplast genome replication and expression. Thus, the discovery of the apicoplast leads to optimism that this organelle would provide a wealth of anti-parasitic drug targets. Therefore, the identification and characterization of new apicoplast proteins could provide new opportunities for therapeutic development. In this study, we characterized the function of a protein called TgBipA, a homolog of a highly conserved bacterial GTPase BipA, which has been implicated in the maturation of the 50S ribosomal subunit and adaptation to cellular stress. We show that TgBipA is essential for apicoplast maintenance and parasite survival.
Insights
The essential apicoplast protein TgBipA, a bacterial GTPase homolog, is crucial for parasite survival. Its loss disrupts apicoplast function, leading to replication defects and cell death, highlighting its role in apicoplast maintenance.
Area of Science:
- Cell Biology
- Parasitology
- Molecular Biology
Background:
- The apicoplast is a vital organelle in Apicomplexa, responsible for producing essential metabolites.
- Nuclear-encoded and apicoplast-trafficked (NEAT) proteins are crucial for apicoplast function.
- TgBipA is a homolog of the bacterial translational GTPase BipA, implicated in bacterial stress response.
Purpose of the Study:
- To characterize the function of TgBipA, a nuclear-encoded apicoplast-trafficked protein.
- To investigate the role of TgBipA in apicoplast maintenance and parasite survival.
- To determine if TgBipA's GTPase activity is essential for its cellular function.
Main Methods:
- Genetic knockout of TgBipA in *Toxoplasma gondii*.
- Immunofluorescence imaging to assess protein localization and organelle integrity.
- In vitro GTPase assays to confirm TgBipA's enzymatic activity.
Main Results:
- Loss of TgBipA leads to defects in apicoplast genome replication and NEAT protein trafficking.
- TgBipA deficiency results in apicoplast loss and parasite death, mimicking effects of inhibiting apicoplast translation.
- TgBipA exhibits GTPase activity in vitro, which is critical for its essential cellular functions.
Conclusions:
- TgBipA is an essential GTPase required for apicoplast maintenance in *Toxoplasma gondii*.
- TgBipA plays a critical role in apicoplast genome replication and protein trafficking.
- TgBipA represents a potential therapeutic target for apicomplexan parasites.
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