A Genome-Wide Functional Screen Identifies Enhancer and Protective Genes for Amyloid Beta-Peptide Toxicity

dc.contributor.authorPicón Pagès, Pol
dc.contributor.authorBosch Morato, Mònica
dc.contributor.authorSubirana, Laia
dc.contributor.authorRubio Moscardó, Francisca
dc.contributor.authorGuivernau, Biuse
dc.contributor.authorFanlo Ucar, Hugo
dc.contributor.authorZeylan, Melisa E.
dc.contributor.authorSenyuz, Simge
dc.contributor.authorHerrera Fernández, Víctor
dc.contributor.authorVicente, Rubén
dc.contributor.authorFernández Fernández, José M.
dc.contributor.authorGarcia Ojalvo, Jordi
dc.contributor.authorGursoy, Attila
dc.contributor.authorKeskin, Ozlem
dc.contributor.authorOliva, Baldomero
dc.contributor.authorPosas, Francesc
dc.contributor.authorNadal Clanchet, Eulàlia de
dc.contributor.authorMuñoz, Francisco J.
dc.date.accessioned2025-04-24T07:23:39Z
dc.date.available2025-04-24T07:23:39Z
dc.date.issued2023-01-09
dc.date.updated2025-04-23T08:04:01Z
dc.description.abstractAlzheimer’s disease (AD) is known to be caused by amyloid β-peptide (Aβ) misfolded into β-sheets, but this knowledge has not yet led to treatments to prevent AD. To identify novel molecular players in Aβ toxicity, we carried out a genome-wide screen in Saccharomyces cerevisiae, using a library of 5154 gene knock-out strains expressing Aβ1–42. We identified 81 mammalian orthologue genes that enhance Aβ1–42 toxicity, while 157 were protective. Next, we performed interactome and text-mining studies to increase the number of genes and to identify the main cellular functions affected by Aβ oligomers (oAβ). We found that the most affected cellular functions were calcium regulation, protein translation and mitochondrial activity. We focused on SURF4, a protein that regulates the store-operated calcium channel (SOCE). An in vitro analysis using human neuroblastoma cells showed that SURF4 silencing induced higher intracellular calcium levels, while its overexpression decreased calcium entry. Furthermore, SURF4 silencing produced a significant reduction in cell death when cells were challenged with oAβ1–42, whereas SURF4 overexpression induced Aβ1–42 cytotoxicity. In summary, we identified new enhancer and protective activities for Aβ toxicity and showed that SURF4 contributes to oAβ1–42 neurotoxicity by decreasing SOCE activity.
dc.format.extent19 p.
dc.format.mimetypeapplication/pdf
dc.identifier.idimarina6574034
dc.identifier.issn1422-0067
dc.identifier.pmid36674792
dc.identifier.urihttps://hdl.handle.net/2445/220563
dc.language.isoeng
dc.publisherMDPI
dc.relation.isformatofReproducció del document publicat a: https://doi.org/10.3390/ijms24021278
dc.relation.ispartofInternational Journal Of Molecular Sciences, 2023, vol. 24, num. 2
dc.relation.urihttps://doi.org/10.3390/ijms24021278
dc.rightscc-by (c) Picón Pagès, Pol et al., 2023
dc.rights.accessRightsinfo:eu-repo/semantics/openAccess
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/es/*
dc.sourceArticles publicats en revistes (Institut de Recerca Biomèdica (IRB Barcelona))
dc.subject.classificationMalaltia d'Alzheimer
dc.subject.classificationAmiloides
dc.subject.classificationCribratge genètic
dc.subject.otherAlzheimer's disease
dc.subject.otherAmyloid
dc.subject.otherGenetic screening
dc.titleA Genome-Wide Functional Screen Identifies Enhancer and Protective Genes for Amyloid Beta-Peptide Toxicity
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/publishedVersion

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