Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/73418

TítuloPhysical, genetic and functional interactions between the eisosome protein Pil1 and the MBOAT O-acyltransferase Gup1
Autor(es)Tulha, Joana
Amorim-Rodrigues, Mariana
Esquembre, Lidia Alejo
Rauch, Sebastien
Tamás, Markus J.
Lucas, Cândida
Palavras-chaveSaccharomyces cerevisiae
co-immunoprecipitation
Gup1 Pil1
eisosomes
cell wall
arsenite
DataFev-2021
EditoraOxford University Press
RevistaFEMS Yeast Research
CitaçãoJoana Tulha, Mariana Amorim-Rodrigues, Lidia Alejo Esquembre, Sebastien Rauch, Markus J Tamás, Cândida Lucas, Physical, genetic and functional interactions between the eisosome protein Pil1 and the MBOAT O-acyltransferase Gup1, FEMS Yeast Research, Volume 21, Issue 1, Februay 2021, foaa070, https://doi.org/10.1093/femsyr/foaa070
Resumo(s)The Saccharomyces cerevisiae MBOAT O-acyltransferase Gup1 is involved in many processes, including cell wall and membrane composition and integrity, and acetic acid-induced cell death. Gup1 was previously shown to interact physically with the mitochondrial membrane VDAC (Voltage-Dependent Anion Channel) protein Por1 and the ammonium transceptor Mep2. By co-immunoprecipitation, the eisosome core component Pil1 was identified as a novel physical interaction partner of Gup1. The expression of PIL1 and Pil1 protein levels were found to be unaffected by GUP1 deletion. In ∆gup1 cells, Pil1 was distributed in dots (likely representing eisosomes) in the membrane, identically to wt cells. However, ∆gup1 cells presented 50% less Pil1-GFP dots/eisosomes, suggesting that Gup1 is important for eisosome formation. The two proteins also interact genetically in the maintenance of cell wall integrity, and during arsenite and acetic acid exposure. We show that Δgup1 Δpil1 cells take up more arsenite than wt and are extremely sensitive to arsenite and to acetic acid treatments. The latter causes a severe apoptotic wt-like cell death phenotype, epistatically reverting the ∆gup1 necrotic type of death. Gup1 and Pil1 are thus physically, genetically and functionally connected.
TipoArtigo
URIhttps://hdl.handle.net/1822/73418
DOI10.1093/femsyr/foaa070
ISSN1567-1356
Versão da editorahttps://academic.oup.com/femsyr/article/21/1/foaa070/6045508
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:CBMA - Artigos/Papers

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