Publikationen, an denen er mitarbeitet Santiago Gutiérrez Martín (21)
2008
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Age-related clinical, serological, and histopathological features of celiac disease
American Journal of Gastroenterology, Vol. 103, Núm. 9, pp. 2360-2365
2003
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Co-transformation with autonomous replicating and integrative plasmids in Penicillium chrysogenum is highly efficient and leads in some cases to rescue of the intact integrative plasmid
Fungal Genetics and Biology, Vol. 40, Núm. 2, pp. 83-92
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Expression of a synthetic copy of the bovine chymosin gene in Aspergillus awamori from constitutive and pH-regulated promoters and secretion using two different pre-pro sequences
Biotechnology and Bioengineering, Vol. 83, Núm. 3, pp. 249-259
2002
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A novel epimerization system in fungal secondary metabolism involved in the conversion of isopenicillin N into penicillin N in Acremonium chrysogenum
Journal of Biological Chemistry, Vol. 277, Núm. 48, pp. 46216-46225
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Subcellular localization of the homocitrate synthase in penicillium chrysogenum
Molecular Genetics and Genomics, Vol. 266, Núm. 5, pp. 711-719
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The cefT gene of Acremonium chrysogenum C10 encodes a putative multidrug efflux pump protein that significantly increases cephalosporin C production
Molecular Genetics and Genomics, Vol. 267, Núm. 5, pp. 673-683
2001
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Elicitation of penicillin biosynthesis by alginate in Penicillium chrysogenum, exerted on pcbAB, pcbC, and penDE genes at the transcriptional level
Journal of Microbiology and Biotechnology, Vol. 11, Núm. 5, pp. 812-818
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Intrachromosomal recombination after targeted monocopy integration Penicillium chrysogenum: Stabilization of the direct repeats to prevent loss of the inserted gene
Current Genetics, Vol. 39, Núm. 4, pp. 231-236
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Targeted inactivation of the mecB gene, encoding cystathionine-γ-lyase, shows that the reverse transsulfuration pathway is required for high-level cephalosporin biosynthesis in Acremonium chrysogenum C10 but not for methionine induction of the cephalosporin genes
Journal of Bacteriology, Vol. 183, Núm. 5, pp. 1765-1772
2000
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Los hongos como factorias celulares: Biodiversidad de metabolitos secundarios
Revista Iberoamericana de Micologia, Vol. 17, Núm. 1
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Overexpression of the lys1 gene in Penicillium chrysogenum: Homocitrate synthase levels, α-aminoadipic acid pool and penicillin production
Applied Microbiology and Biotechnology, Vol. 54, Núm. 1, pp. 69-77
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The specific transport system for lysine is fully inhibited by ammonium in Penicillium chrysogenum: An ammonium-insensitive system allows uptake in carbon-starved cells
Antonie van Leeuwenhoek, International Journal of General and Molecular Microbiology, Vol. 77, Núm. 1, pp. 91-100
1999
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Characterization and lysine control of expression of the lys1 gene of Penicillium chrysogenum encoding homocitrate synthase
Gene, Vol. 226, Núm. 1, pp. 51-59
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Gene organization and plasticity of the β-lactam genes in different filamentous fungi
Antonie van Leeuwenhoek, International Journal of General and Molecular Microbiology, Vol. 75, Núm. 1-2, pp. 81-94
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Gene targeting in Penicillium chrysogenum: Disruption of the lys2 gene leads to penicillin overproduction
Journal of Bacteriology, Vol. 181, Núm. 4, pp. 1181-1188
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Intrachromosomal recombination between direct repeats in Penicillium chrysogenum: Gene conversion and deletion events
Molecular and General Genetics, Vol. 261, Núm. 6, pp. 994-1000
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Penicillin and cephalosporin biosynthesis: Mechanism of carbon catabolite regulation of penicillin production
Antonie van Leeuwenhoek, International Journal of General and Molecular Microbiology, Vol. 75, Núm. 1-2, pp. 21-31
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Transcription of the pcbAB, pcbC and penDE genes of Penicillium chrysogenum AS-P-78 is repressed by glucose and the repression is not reversed by alkaline pHs
Microbiology, Vol. 145, Núm. 2, pp. 317-324
1998
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Characterization and nitrogen-source regulation at the transcriptional level of the gdhA gene of Aspergillus awamori encoding an NADP-dependent glutamate dehydrogenase
Current Genetics, Vol. 34, Núm. 1, pp. 50-59
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Characterization of the lys2 gene of Penicillium chrysogenum encoding α-aminoadipic acid reductase
Molecular and General Genetics, Vol. 259, Núm. 5, pp. 549-556