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DerechosPreviewFecha Public.TítuloAutor(es)Tipo
closedAccessjun-2002Gene expression analysis of cold and freeze stress in baker's yeastRodríguez Vargas, Sonia CSIC; Estruch, Francisco; Rández Gil, Francisca CSIC ORCIDartículo
openAccessMicrobBiotech2020-Randez.pdf.jpg25-mar-2020Myriocin‐induced adaptive laboratory evolution of an industrial strain of Saccharomyces cerevisiae reveals its potential to remodel lipid composition and heat toleranceRández Gil, Francisca CSIC ORCID; Prieto Alamán, José Antonio CSIC ORCID; Rodríguez Puchades, Alejandro; Casas, Josefina CSIC ORCID ; Sentandreu, Vicente; Estruch, Franciscoartículo
openAccessPrieto-BBALIP-19-223R2.pdf.jpg31-oct-2019Pho85 and PI(4,5)P2 regulate different lipid metabolic pathways in response to coldPrieto, Jose Antonio CSIC; Estruch, Francisco; Córcoles Sáez,Isaac; Del Poeta, Maurizio; Rieger, Robert; Stenze, Irene; Rández Gil, Francisca CSIC ORCIDartículo
closedAccessnov-1999The Saccharomyces cerevisiae RanGTP-binding protein Msn5p is involved in different signal transduction pathwaysAlepuz, Paula; Matheos, Dina; Cunningham, Kyle W.; Estruch, Franciscoartículo
openAccessjof-08-00092-v2.pdf.jpg18-ene-2022Slt2 Is Required to Activate ER-Stress-Protective Mechanisms through TORC1 Inhibition and Hexosamine Pathway ActivationSánchez-Adriá, Isabel E.; Sanmartín, Gemma CSIC ORCID; Prieto, Jose Antonio CSIC; Estruch, Francisco; Rández Gil, Francisca CSIC ORCIDartículo
openAccessfcell-08-592159.pdf.jpg17-nov-2020Sphingolipids and Inositol Phosphates Regulate the Tau Protein Phosphorylation Status in Humanized YeastRández, Francisca; Bojunga, Lino; Estruch, Francisco; Winderickx, Joris; Del Poeta, Maurizio; Prieto, José A.artículo
openAccessLWT2023-SanchezAdria.pdf.jpg13-jun-2023Technological and acid stress performance of yeast isolates from industrial sourdoughSánchez-Adriá, Isabel E.; Sanmartín, Gemma CSIC ORCID; Prieto, José Antonio; Estruch, Francisco; Fortis, Estefania; Rández Gil, Francisca CSIC ORCIDartículo
openAccessMICROBIO-2019-342-RA.pdf.jpg19-nov-2019The formation of hybrid complexes between isoenzymes of glyceraldehyde‐3‐phosphate dehydrogenase regulates its aggregation state, the glycolytic activity and sphingolipid status in Saccharomyces cerevisiaeRández, Francisca; Sánchez‐Adriá, Isabel E.; Estruch, Francisco; Prieto, Jose Antonio CSICartículo