Toxoplasma LIPIN is essential in channeling host lipid fluxes through membrane biogenesis and lipid storage
Apicomplexa are obligate intracellular parasites responsible for major human diseases. Their intracellular survival relies on intense lipid synthesis, which fuels membrane biogenesis. Parasite lipids are generated as an essential combination of fatty acids scavenged from the host and de novo synthes...
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Veröffentlicht in: | Nature communications 2021-05, Vol.12 (1), p.2813-2813, Article 2813 |
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Sprache: | eng |
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Zusammenfassung: | Apicomplexa are obligate intracellular parasites responsible for major human diseases. Their intracellular survival relies on intense lipid synthesis, which fuels membrane biogenesis. Parasite lipids are generated as an essential combination of fatty acids scavenged from the host and de novo synthesized within the parasite apicoplast. The molecular and metabolic mechanisms allowing regulation and channeling of these fatty acid fluxes for intracellular parasite survival are currently unknown. Here, we identify an essential phosphatidic acid phosphatase in
Toxoplasma gondii
,
Tg
LIPIN, as the central metabolic nexus responsible for controlled lipid synthesis sustaining parasite development. Lipidomics reveal that
Tg
LIPIN controls the synthesis of diacylglycerol and levels of phosphatidic acid that regulates the fine balance of lipids between storage and membrane biogenesis. Using fluxomic approaches, we uncover the first parasite host-scavenged lipidome and show that
Tg
LIPIN prevents parasite death by ‘lipotoxicity’ through effective channeling of host-scavenged fatty acids to storage triacylglycerols and membrane phospholipids.
Apicomplexa generate essential lipids as combination of host fatty acids and de novo synthesized within the apicoplast. Here, the authors identify a phosphatidic acid phosphatase in
Toxoplasma gondii
, TgLIPIN, as central for controlled lipid synthesis and define the host-scavenged lipidome. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-021-22956-w |