Auxi Prieto
Auxi Prieto
Other namesScopus ID 57218626389,
Polymer Biotechnology CSIC-CIB/Susplast (
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Cited by
Cited by
Biodegradation of Aromatic Compounds byEscherichia coli
E Dı́az, A Ferrández, MA Prieto, JL Garcı́a
Microbiology and Molecular Biology Reviews 65 (4), 523-569, 2001
A holistic view of polyhydroxyalkanoate metabolism in Pseudomonas putida
A Prieto, IF Escapa, V Martínez, N Dinjaski, C Herencias, F de la Peña, ...
Environmental microbiology 18 (2), 341-357, 2016
Bacterial promoters triggering biodegradation of aromatic pollutants
E Dı́az, MA Prieto
Current Opinion in Biotechnology 11 (5), 467-475, 2000
Functional Analysis of the Small Component of the 4-Hydroxyphenylacetate 3-Monooxygenase of Escherichia coli W: a Prototype of a New Flavin:NAD(P)H …
B Galán, E Díaz, MA Prieto, JL García
Journal of Bacteriology 182 (3), 627-636, 2000
PhaF, a Polyhydroxyalkanoate-Granule-Associated Protein of Pseudomonas oleovorans GPo1 Involved in the Regulatory Expression System for pha Genes
MA Prieto, B Bühler, K Jung, B Witholt, B Kessler
Journal of bacteriology 181 (3), 858-868, 1999
Molecular characterization of the 4-hydroxyphenylacetate catabolic pathway of Escherichia coli W: engineering a mobile aromatic degradative cluster
MA Prieto, E Diaz, JL García
Journal of bacteriology 178 (1), 111-120, 1996
Plastic waste as a novel substrate for industrial biotechnology
N Wierckx, MA Prieto, P Pomposiello, V de Lorenzo, K O'Connor, ...
Microbial biotechnology 8 (6), 900, 2015
Novel biodegradable aromatic plastics from a bacterial source: genetic and biochemical studies on a route of the phenylacetyl-CoA catabolon
B Garcıa, ER Olivera, B Minambres, M Fernández-Valverde, LM Canedo, ...
Journal of Biological Chemistry 274 (41), 29228-29241, 1999
Molecular characterization of 4-hydroxyphenylacetate 3-hydroxylase of Escherichia coli. A two-protein component enzyme.
MA Prieto, JL Garcia
Journal of Biological Chemistry 269 (36), 22823-22829, 1994
The turnover of medium‐chain‐length polyhydroxyalkanoates in Pseudomonas putida KT2442 and the fundamental role of PhaZ depolymerase for the metabolic …
LI De Eugenio, IF Escapa, V Morales, N Dinjaski, B Galán, JL García, ...
Environmental Microbiology 12 (1), 207-221, 2010
Nucleoid‐associated PhaF phasin drives intracellular location and segregation of polyhydroxyalkanoate granules in Pseudomonas putida KT2442
B Galán, N Dinjaski, B Maestro, LI De Eugenio, IF Escapa, JM Sanz, ...
Molecular microbiology 79 (2), 402-418, 2011
The metabolic response of P. putida KT2442 producing high levels of polyhydroxyalkanoate under single- and multiple-nutrient-limited growth: Highlights from a …
I Poblete-Castro, IF Escapa, C Jäger, J Puchalka, CM Chi Lam, ...
Microbial cell factories 11, 1-21, 2012
Plastic waste management, a matter for the ‘community’
O Drzyzga, A Prieto
Microbial biotechnology 12 (1), 66, 2019
Biochemical evidence that phaZ gene encodes a specific intracellular medium chain length polyhydroxyalkanoate depolymerase in Pseudomonas putida KT2442: characterization of a …
LI de Eugenio, P Garci, JM Luengo, J San Roma, JL Garci
Journal of biological chemistry 282 (7), 4951-4962, 2007
Plastic biodegradation: Challenges and opportunities
N Wierckx, T Narancic, C Eberlein, R Wei, O Drzyzga, A Magnin, ...
Consequences of microbial interactions with hydrocarbons, oils, and lipids …, 2018
In vivo immobilization of fusion proteins on bioplastics by the novel tag BioF
C Moldes, P García, JL García, MA Prieto
Applied and Environmental Microbiology 70 (6), 3205-3212, 2004
The polyhydroxyalkanoate metabolism controls carbon and energy spillage in Pseudomonas putida
IF Escapa, JL García, B Bühler, LM Blank, MA Prieto
Environmental Microbiology 14 (4), 1049-1063, 2012
The role of GlpR repressor in Pseudomonas putida KT2440 growth and PHA production from glycerol
IF Escapa, C Del Cerro, JL García, MA Prieto
Environmental Microbiology 15 (1), 93-110, 2013
Two‐stage continuous process development for the production of medium‐chain‐length poly (3‐hydroxyalkanoates)
K Jung, W Hazenberg, M Prieto, B Witholt
Biotechnology and Bioengineering 72 (1), 19-24, 2001
The contribution of microbial biotechnology to sustainable development goals
K Timmis, WM De Vos, JL Ramos, SE Vlaeminck, A Prieto, A Danchin, ...
Microbial biotechnology 10 (5), 984-987, 2017
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