Directory
Mª Angeles De La Torre Ruiz

Mª Angeles De La Torre Ruiz

Degree: PhD

973 702 410
mariaangeles.delatorre(ELIMINAR)@udl.cat

ResearcherID: http://www.researcherid.com/rid/A-7357-2010

Publications

  • Ivanova Petkova, Mima; Pujol-Carrion, Nuria; Angeles de la Torre-Ruiz, Maria

    Mtl1 O-mannosylation mediated by both Pmt1 and Pmt2 is important for cell survival under oxidative conditions and TOR blockade

    FUNGAL GENETICS AND BIOLOGY 49 903-914. .

    [doi:10.1016/j.fgb.2012.08.005]

  • Corcoles-Saez, Isaac; Ballester-Tomas, Lidia; de la Torre-Ruiz, Maria A.; Prieto, Jose A.; Randez-Gil, Francisca

    Low temperature highlights the functional role of the cell wall integrity pathway in the regulation of growth in Saccharomyces cerevisiae

    BIOCHEMICAL JOURNAL 446 477-488. .

    [doi:10.1042/BJ20120634]

  • Mitjana, Felipe V.; Petkova, Mima I.; Pujol-Carrion, Nuria; Angeles de la Torre-Ruiz, Maria

    Pkc1 and actin polymerisation activities play a role in ribosomal gene repression associated with secretion impairment caused by oxidative stress

    FEMS YEAST RESEARCH 11 656-659. .

    [doi:10.1111/j.1567-1364.2011.00754.x]

  • de la Torre-Ruiz, M. A.

    Fungal Model Systems to Understand the Mechanisms Unravelling the Oxidative Stress Response

    Current Protein & Peptide Science 11 -. .

  • Angeles de la Torre-Ruiz, Maria; Mozo-Villarias, Angel; Pujol, Nuria; Petkova, Mima I.

    How budding yeast sense and transduce the oxidative stress signal and the impact in cell growth and morphogenesis.

    Current Protein & Peptide Science 11 669-679. .

  • Pujol-Carrion, Nuria; Angeles de la Torre-Ruiz, Maria

    Glutaredoxins Grx4 and Grx3 of Saccharomyces cerevisiae play a role in actin dynamics through their Trx domains, which contributes to oxidative stress resistance.

    APPLIED AND ENVIRONMENTAL MICROBIOLOGY 76 7826-7835. .

    [doi:10.1128/AEM.01755-10]

  • de la Torre-Ruiz MA

    Fungal model system to understand the mechanisms unravelling the oxidative stress response.

    Current Protein & Peptide Science 11 651-651. .

  • Petkova MI; Pujol-Carrion N; de la Torre-Ruiz MA

    Signal flow between CWI/TOR and CWI/RAS in budding yeast under conditions of oxidative stress and glucose starvation.

    Communicative & Integrative Biology 3 555-557. .

    [doi:10.4161/cib.3.6.12974]

  • Ivanova Petkova, Mima; Pujol-Carrion, Nuria; Arroyo, Javier; Garcia-Cantalejo, Jesus; Angeles de la Torre-Ruiz, Maria

    Mtl1 is required to activate general stress response through Tor1 and Ras2 inhibition under conditions of glucose starvation and oxidative stress.

    Journal Of Biological Chemistry 285 19521-19531. .

    [doi:10.1074/jbc.M109.085282]

  • Pujol, Nuria; Bonet, Carmel; Vilella, Felip; Petkova, Mima I.; Mozo-Villarias, Angel; Angeles de la Torre-Ruiz, Maria

    Two proteins from Saccharomyces cerevisiae: Pfy1 and Pkc1, play a dual role in activating actin polymerization and in increasing cell viability in the adaptive response to oxidative stress.

    FEMS YEAST RESEARCH 9 1196-1207. .

    [doi:10.1111/j.1567-1364.2009.00565.x]

  • Reverter-Branchat, Gemma; Cabiscol, Elisa; Tamarit, Jordi; Sorolla, M. Alba; de la Torre, M. Angeles; Ros, Joaquim

    Chronological and replicative life-span extension in Saccharomyces cerevisiae by increased dosage of alcohol dehydrogenase 1.

    MICROBIOLOGY-SGM 153 3667-3676. .

    [doi:10.1099/mic.0.2007/009340-0]

  • Herrero, E.; de la Torre-Ruiz, M. A.

    Monothiol glutaredoxins: a common domain for multiple functions.

    Cellular And Molecular Life Sciences 64 1518-1530. .

    [doi:10.1007/s00018-007-6554-8]

Projects

  • Influencia de la disponibilidad y hormesis del hierro en la respuesta autofágica y oxidativa y en la extensión cronológica de la vida en levaduras
  • Mecanismos regulatorios de la respuesta a los estreses oxidativo y nutricional mediados por algunos elementos de las vías PKC1-MAP quinasa, TOR y RAS/cAMP de S. Cerevisiae
  • Caracterización de las funciones de los elementos de la vía de integridad celular Pkc1 y Mtl1 en los procesos morfogenéticos,organización del citoesqueleto, biogénesis de ribosomas y crecimiento celulara través de un modelo de estrés oxidativo en Saccharomyces cerevisiae