![Foto de Casqueiro J.](/autoricon.png)
Casqueiro J.
39
Coauthors
7
Documentos
Volumen de publicaciones por año
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Año de publicación | Num. Publicaciones |
---|---|
2001 | 1 |
2003 | 1 |
2004 | 2 |
2005 | 2 |
2009 | 1 |
Publicaciones por áreas de conocimiento
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Área de conocimiento | Num. Publicaciones |
---|---|
Bioquímica | 11 |
Biología molecular | 2 |
Microbiología | 1 |
Publicaciones por áreas temáticas
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Área temática | Num. Publicaciones |
---|---|
Microorganismos, hongos y algas | 6 |
Bioquímica | 4 |
Plantas conocidas por sus características y flores | 1 |
Técnicas, equipos y materiales | 1 |
Fisiología y materias afines | 1 |
Partes y sistemas específicos de las plantas | 1 |
Principales fuentes de datos
Origen | Num. Publicaciones |
---|---|
Scopus | 7 |
Google Scholar | 6 |
RRAAE | 0 |
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Coautores destacados por número de publicaciones
Coautor | Num. Publicaciones |
---|---|
Martin J.F. | 7 |
Leopoldo Naranjo-Briceño | 7 |
Ullán R.V. | 4 |
Lamas-Maceiras M. | 3 |
Bañuelos O. | 3 |
De Valmaseda E. | 3 |
Campoy S. | 2 |
Teijeira F. | 1 |
Gutiérrez S. | 1 |
Lopez P. | 1 |
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Publicaciones del autor
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
ArticleAbstract: The efficiency of co-transformation in Penicillium chrysogenum Wisconsin 54-1255 pyrG- and the fatePalabras claves:AMA1 sequence, Autonomous replication vector, Co-transformation, Integrative plasmid recoveryAutores:Bañuelos O., Casqueiro J., Gutiérrez S., Leopoldo Naranjo-Briceño, Martin J.F.Fuentes:googlescopusExpression of cefD2 and the conversion of isopenicillin N into penicillin N by the two-component epimerase system are rate-limiting steps in cephalosporin biosynthesis
ArticleAbstract: The conversion of isopenicillin N into penicillin N in Acremonium chrysogenum is catalyzed by an epiPalabras claves:Cephalosporin biosynthesis, Cephalosporin gene clusters, Isopenicilin N epimerase, Isopenicillin N, Rate-limiting stepsAutores:Casqueiro J., Leopoldo Naranjo-Briceño, Martin J.F., Ullán R.V., Vaca I.Fuentes:googlescopusLysine is catabolized to 2-aminoadipic acid in Penicillium chrysogenum by an ω-aminotransferase and to saccharopine by a lysine 2-ketoglutarate reductase. Characterization of the ω-aminotransferase
ArticleAbstract: The biosynthesis and catabolism of lysine in Penicillium chrysogenum is of great interest because thPalabras claves:2-Aminoadipic acid, lysine, Penicillin biosynthesis, Penicillium chrysogenum, Ω-AminotransferaseAutores:Campoy S., Casqueiro J., De Valmaseda E., Leopoldo Naranjo-Briceño, Martin J.F.Fuentes:googlescopusCharacterization of the oat1 gene of Penicillium chrysogenum encoding an ω-aminotransferase: Induction by L-lysine, L-ornithine and L-arginine and repression by ammonium
ArticleAbstract: The Penicillium chrysogenum oat1 gene, which encodes a class III ω-aminotransferase, was cloned andPalabras claves:2-Amino-adipic acid, oat1, Penicillin biosynthesis, Penicillium chrysogenum, Ω-AminotransferaseAutores:Campoy S., Casqueiro J., Lamas-Maceiras M., Leopoldo Naranjo-Briceño, Martin J.F., Teijeira F., Ullán R.V.Fuentes:googlescopusConversion of pipecolic acid into lysine in Penicillium chrysogenum requires pipecolate oxidase and saccharopine reductase: Characterization of the lys7 gene encoding saccharopine reductase
ArticleAbstract: Pipecolic acid is a component of several secondary metabolites in plants and fungi. This compound isPalabras claves:Autores:Bañuelos O., Casqueiro J., De Valmaseda E., Leopoldo Naranjo-Briceño, Lopez P., Martin J.F., Riaño J.Fuentes:googlescopus