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The large GTPase Sey1/atlastin mediates lipid droplet- and FadL-dependent intracellular fatty acid metabolism of Legionella pneumophila.


ABSTRACT: The amoeba-resistant bacterium Legionella pneumophila causes Legionnaires' disease and employs a type IV secretion system (T4SS) to replicate in the unique, ER-associated Legionella-containing vacuole (LCV). The large fusion GTPase Sey1/atlastin is implicated in ER dynamics, ER-derived lipid droplet (LD) formation, and LCV maturation. Here, we employ cryo-electron tomography, confocal microscopy, proteomics, and isotopologue profiling to analyze LCV-LD interactions in the genetically tractable amoeba Dictyostelium discoideum. Dually fluorescence-labeled D. discoideum producing LCV and LD markers revealed that Sey1 as well as the L. pneumophila T4SS and the Ran GTPase activator LegG1 promote LCV-LD interactions. In vitro reconstitution using purified LCVs and LDs from parental or Δsey1 mutant D. discoideum indicated that Sey1 and GTP promote this process. Sey1 and the L. pneumophila fatty acid transporter FadL were implicated in palmitate catabolism and palmitate-dependent intracellular growth. Taken together, our results reveal that Sey1 and LegG1 mediate LD- and FadL-dependent fatty acid metabolism of intracellular L. pneumophila.

SUBMITTER: Husler D 

PROVIDER: S-EPMC10259473 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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The large GTPase Sey1/atlastin mediates lipid droplet- and FadL-dependent intracellular fatty acid metabolism of <i>Legionella pneumophila</i>.

Hüsler Dario D   Stauffer Pia P   Keller Bernhard B   Böck Desirée D   Steiner Thomas T   Ostrzinski Anne A   Vormittag Simone S   Striednig Bianca B   Swart A Leoni AL   Letourneur François F   Maaß Sandra S   Becher Dörte D   Eisenreich Wolfgang W   Pilhofer Martin M   Hilbi Hubert H  

eLife 20230509


The amoeba-resistant bacterium <i>Legionella pneumophila</i> causes Legionnaires' disease and employs a type IV secretion system (T4SS) to replicate in the unique, ER-associated <i>Legionella</i>-containing vacuole (LCV). The large fusion GTPase Sey1/atlastin is implicated in ER dynamics, ER-derived lipid droplet (LD) formation, and LCV maturation. Here, we employ cryo-electron tomography, confocal microscopy, proteomics, and isotopologue profiling to analyze LCV-LD interactions in the genetical  ...[more]

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