CÉSAR
NOMBELA CANO
Investigador hasta 2020
Universidad de Salamanca
Salamanca, EspañaPublicaciones en colaboración con investigadores/as de Universidad de Salamanca (29)
2019
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Author Correction: Signalling through the yeast MAPK Cell Wall Integrity pathway controls P-body assembly upon cell wall stress (Scientific Reports, (2019), 9, 1, (3186), 10.1038/s41598-019-40112-9)
Scientific Reports
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Signalling through the yeast MAPK Cell Wall Integrity pathway controls P-body assembly upon cell wall stress
Scientific Reports, Vol. 9, Núm. 1
2015
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Genomic profiling of fungal cell wall-interfering compounds: Identification of a common gene signature
BMC Genomics, Vol. 16, Núm. 1
2007
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Two-dimensional gel electrophoresis as analytical tool for identifying candida albicans immunogenic proteins
From Genome to Proteome: Advances in the Practice & Application of Proteomics (Wiley Blackwell), pp. 421-430
2005
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The importance of the phagocytes' innate response in resolution of the infection induced by a low virulent Candida albicans mutant
Scandinavian Journal of Immunology, Vol. 62, Núm. 3, pp. 224-233
2004
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Fungal cell wall biogenesis: Building a dynamic interface with the environment
Microbiology, Vol. 150, Núm. 10, pp. 3099-3103
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Proteomics-based identification of novel Candida albicans antigens for diagnosis of systemic candidiasis in patients with underlying hematological malignancies
Proteomics, Vol. 4, Núm. 10, pp. 3084-3106
2003
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Analysis of the Candida albicans proteome: I. Strategies and applications
Journal of Chromatography B: Analytical Technologies in the Biomedical and Life Sciences, Vol. 787, Núm. 1, pp. 101-128
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Analysis of the Candida albicans proteome: II. Protein information technology on the Net (update 2002)
Journal of Chromatography B: Analytical Technologies in the Biomedical and Life Sciences, Vol. 787, Núm. 1, pp. 129-148
2001
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A single-copy suppressor of the Saccharomyces cerevisae late-mitotic mutants cdc15 and dbf2 is encoded by the Candida albicans CDC14 gene
Yeast, Vol. 18, Núm. 9, pp. 849-858
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Analysis of the serologic response to systemic Candida albicans infection in a murine model
Proteomics, Vol. 1, Núm. 4, pp. 550-559
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Two different NO-dependent mechanisms account for the low virulence of a non-mycelial morphological mutant of Candida albicans
Medical Microbiology and Immunology, Vol. 189, Núm. 3, pp. 153-160
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Virulence genes in the pathogenic yeast Candida albicans
FEMS Microbiology Reviews, Vol. 25, Núm. 2, pp. 245-268
2000
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Applications of flow cytometry to clinical microbiology
Clinical Microbiology Reviews, Vol. 13, Núm. 2, pp. 167-195
1999
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The budding yeast Cdc 15 localizes to the spindle pole body in a cell-cycle-dependent manner
Molecular Cell Biology Research Communications, Vol. 2, Núm. 3, pp. 178-184
1982
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A mutation (exb1-1) that abolishes exo-1,3-β-glucanase production does not affect cell-wall dynamics in Saccharomyces cerevisiae
FEMS Microbiology Letters, Vol. 13, Núm. 3, pp. 259-263
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Purification and partial characterization of a developmentally regulated 1,3-β-glucanase from Penicillium italicum
Journal of General Microbiology, Vol. 128, Núm. 9, pp. 2047-2053
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Purification and partial characterization of a new, sporulation specific, exo-β-glucanase from Saccharomyces cerevisiae
Biochemical and Biophysical Research Communications, Vol. 105, Núm. 4, pp. 1347-1353
1980
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Synthesis of β-glucanases during sporulation in Saccharomyces cerevisiae: formation of a new, sporulation-specific 1,3-β-glucanase
Journal of Bacteriology, Vol. 143, Núm. 2, pp. 621-627
1979
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Characterization and synthesis regulation of Penicillium italicum 1,6-β-glucanase
Archives of Microbiology, Vol. 121, Núm. 3, pp. 265-270