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D-lactate transport and metabolism in rat liver mitochondria 1-gen-2002 DE BARI, L; Atlante, A; Guaragnella, N; PRINCIPATO G., AND PASSARELLA S
ATO3 encoding a putative outward ammonium transporter is an RTG-independent retrograde responsive gene regulated by GCN4 and the SPS amino acid sensor system 1-gen-2003 Guaragnella, N; N, ; And, Butow; R., A.
Acid stress adaptation protects Saccharomyces cerevisiae from acetic acid-induced programmed cell death 1-gen-2005 Giannattasio, S; Guaragnella, N; CORTE REAL, M; PASSARELLA S., AND MARRA E
YCA1 participates in the acetic acid induced programmed cell death also in a manner unrelated to its caspase-like activity 1-gen-2006 Guaragnella, N; Pereira, C; JOO SOUSA, M; Antonacci, L; Passarella, S; CORTE-REAL, M; MARRA E., AND GIANNATTASIO S
Hydrogen peroxide and superoxide anion production during acetic acid-induced yeast programmed cell death 1-gen-2007 Guaragnella, N; Antonacci, L; Passarella, S; MARRA E., AND GIANNATTASIO S
Programmed cell death in Saccharomyces cerevisiae 1-gen-2008 Guaragnella, N; Giannattasio, S; Antonacci, L; Marra, E; Passarella, S
Cytochrome c is released from coupled mitochondria of yeast en route to acetic acid-induced programmed cell death and can work as an electron donor and a ROS scavenger 1-gen-2008 Giannattasio, S; Atlante, A; Antonacci, L; Guaragnella, N; Lattanzio, P; Passarella, S; Marra, E
Catalase T and Cu,Zn-superoxide dismutase in the acetic acid-induced programmed cell death in Saccharomyces cerevisiae 1-gen-2008 Guaragnella, N; Antonacci, L; Giannattasio, S; Marra, E; Passarella, S
A transient proteasome activation is needed for acetic acid-induced programmed cell death to occur in Saccharomyces cerevisiae 1-gen-2008 Valenti, D; Vacca, Ra; Guaragnella, N; Passarella, S; Marra, E; Giannattasio, S
Genotypic hetereogeneity of the molecular basis of cystic fibrosis: the paradigm of lithuanian population genetic testing 1-gen-2009 S., Giannattasio; A., Bobba; P., Lattanzio; Guaragnella, N; V., Kucinskas; E., Marra
Knock-out of metacaspase and/or cytochrome c results in the activation of a ROS-independent acetic acid-induced programmed cell death pathway in yeast 1-gen-2010 Guaragnella, N; Passarella, S; MARRA E., AND GIANNATTASIO S
Yeast acetic acid-induced programmed cell death can occur without cytochrome c release which requires metacaspase YCA1 1-gen-2010 Guaragnella, N; Bobba, A; Passarella, S; MARRA E., AND GIANNATTASIO S
Programmed Cell death occurs through different pathways in Saccharomyces cerevisiae 1-gen-2011 Guaragnella, N; Passarella, S; Marra, E; Giannattasio, S
Achievements and perspectives in yeast acetic acid-induced programmed cell death pathways 1-gen-2011 Guaragnella, N; Antonacci, L; Passarella, S; Marra, E; Giannattasio, S
Cytochrome c Trp65Ser substitution results in inhibition of acetic acid-induced programmed cell death in Saccharomyces cerevisiae 1-gen-2011 Guaragnella, N; Passarella, S; Marra, E; Giannattasio, S
The N-Acetylcysteine-Insensitive Acetic Acid-Induced Yeast Programmed Cell Death Occurs Without Macroautophagy 1-gen-2012 Antonacci, L; Guaragnella, N; Zdralevic, M; Passarella, S; Marra, E; Giannattasio, S.
Yeast as a tool to study signaling pathways in mitochondrial stress response and cytoprotection 1-gen-2012 Zdralevic, M; Guaragnella, N; Antonacci, L; Marra, E; Giannattasio, S
Molecular mechanisms of programmed cell death induced by acetic acid in Saccharomyces cerevisiae 1-gen-2012 Giannattasio, S; Guaragnella, N; Marra, E
The role of mitochondria in yeast programmed cell death 1-gen-2012 Guaragnella, N; Zdralevic, M; Antonacci, L; Passarella, S; Marra, E; Giannattasio, S
Stress-related mitochondrial components and mitochondrial genome as targets of anticancer therapy 1-gen-2013 Giannattasio, S; Guaragnella, N; Arbini, A.; Moro, L.
Mostrati risultati da 1 a 20 di 55
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