An Alveolata secretory machinery adapted to parasite host cell invasion
ContributorsAquilini, Eleonora; Cova, Marta Mendonça; Mageswaran, Shrawan Kumar
; Dos Santos Pacheco, Nicolas
; Sparvoli, Daniela
; Penarete-Vargas, Diana Marcela; Najm, Rania
; Graindorge, Arnault
; Suarez, Catherine
; Maynadier, Marjorie
; Berry-Sterkers, Laurence; Urbach, Serge
; Ruga Fahy, Pilar; Guérin, Amandine
; Striepen, Boris; Dubremetz, Jean-François; Chang, Yi-Wei
; Turkewitz, Aaron P.; Lebrun, Maryse
Published inNature microbiology, vol. 6, no. 4, p. 425-434
Publication date2021-04
First online date2021-01-25
Abstract
Keywords
- Alveolata / classification
- Alveolata / physiology
- Alveolata / ultrastructure
- Cell Membrane / metabolism
- Exocytosis
- Host-Parasite Interactions
- Humans
- Organelles / metabolism
- Protozoan Proteins / genetics
- Protozoan Proteins / metabolism
- Secretory Vesicles / metabolism
Affiliation entities
Research groups
Funding
- NIGMS NIH HHS [R01 GM105783]
- NIAID NIH HHS [R01 AI112427]
- European Commission - Unravelling the secretion machinery for virulence factors in apicomplexan parasites [833309]
Citation (ISO format)
AQUILINI, Eleonora et al. An Alveolata secretory machinery adapted to parasite host cell invasion. In: Nature microbiology, 2021, vol. 6, n° 4, p. 425–434. doi: 10.1038/s41564-020-00854-z
Main files (2)
Article (Published version)
Article (Accepted version)
Secondary files (19)
Supplemental data - Supplementary Table 1. Putative gene orthologues found in Toxoplasma gondii and Plasmodium falciparum using Paramecium protein sequences.
Supplemental data - Supplementary Table 2 Mass spectrometry data of Nd9 immunoprecipitation.
Supplemental data - Supplementary Table 3 Mass spectrometry data of NdP1 immunoprecipitation.
Identifiers
- PID : unige:171842
- DOI : 10.1038/s41564-020-00854-z
- PMID : 33495622
- PMCID : PMC8886610
Additional URL for this publicationhttps://www.nature.com/articles/s41564-020-00854-z
Journal ISSN2058-5276
