De Lorenzo, Víctor
Systems and Synthetic Biology Program, National Spanish Center for Biotechnology (CNB-CSIC), Madrid, Spain.
Áreas de investigación
Enfoque geográfico
- Spain Autogobierno
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Afiliación
Publicaciones
publicaciones seleccionadas
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artículo académico
- The urgent need for microbiology literacy in society. Environmental Microbiology. 1-21. 2019
- The imbroglio of the physiological Cra effector clarified at last. Molecular Microbiology. 109:273-277. 2018
- A Metabolic Widget Adjusts the Phosphoenolpyruvate-Dependent Fructose Influx in Pseudomonas putida.. mSystems. 1. 2016
- From dirt to industrial applications: Pseudomonas putida as a Synthetic Biology chassis for hosting harsh biochemical reactions. Current Opinion in Chemical Biology. 34:20-29. 2016
- The RNA chaperone Hfq enables the environmental stress tolerance super-phenotype of Pseudomonas putida. Environmental Microbiology. 18:3309-3326. 2016
- Interplay of the PtsN (EIIANtr) protein of Pseudomonas putida with its target sensor kinase KdpD. Environmental Microbiology Reports. 7:899-907. 2015
- Pseudomonas putida KT2440 strain metabolizes glucose through a cycle formed by enzymes of the Entner-Doudoroff, embden-meyerhof-parnas, and pentose phosphate pathways. Journal of Biological Chemistry. 290:25920-25932. 2015
- The two paralogue phoN (phosphinothricin acetyl transferase) genes of Pseudomonas putida encode functionally different proteins. Environmental Microbiology. 17:3330-3340. 2015
- Fructose 1-phosphate is the one and only physiological effector of the Cra (FruR) regulator of Pseudomonas putida. FEBS Open Bio. 4:377-386. 2014
- The metabolic cost of flagellar motion in Pseudomonas putidaKT2440. Environmental Microbiology. 16:291-303. 2014
- Accumulation of inorganic polyphosphate enables stress endurance and catalytic vigour in Pseudomonas putida KT24. Microbial Cell Factories. 12. 2013
- Endogenous Stress Caused by Faulty Oxidation Reactions Fosters Evolution of 2,4-Dinitrotoluene-Degrading Bacteria. PLoS Genetics. 9. 2013
- Cra regulates the cross-talk between the two branches of the phosphoenolpyruvate: Phosphotransferase system of Pseudomonas putida. Environmental Microbiology. 15:121-132. 2012
- Modeling and analysis of flux distributions in the two branches of the phosphotransferase system in Pseudomonas putida. BMC Systems Biology. 6. 2012
- Regulatory tasks of the phosphoenolpyruvate-phosphotransferase system of Pseudomonas putida in central carbon metabolism. mBio. 3. 2012
- The Crp regulator of Pseudomonas putida: Evidence of an unusually high affinity for its physiological effector, cAMP. Environmental Microbiology. 14:702-703. 2012
- The Entner-Doudoroff pathway empowers Pseudomonas putidaKT2440 with a high tolerance to oxidative stress. Environmental Microbiology. 15:1772-1785. 2012
- The IHF regulon of exponentially growing Pseudomonas putida cells. Environmental Microbiology. 15:49-63. 2012
- The Standard European Vector Architecture (SEVA): A coherent platform for the analysis and deployment of complex prokaryotic phenotypes. Nucleic Acids Research. 41. 2012
- Association of dnt genes of Burkholderia sp. DNT with the substrate-blind regulator DntR draws the evolutionary itinerary of 2,4-dinitrotoluene biodegradation. Molecular Microbiology. 82:287-299. 2011
- Fructose 1-phosphate is the preferred effector of the metabolic regulator Cra of Pseudomonas putida. Journal of Biological Chemistry. 286:9351-9359. 2011
- Regulatory exaptation of the catabolite repression protein (Crp)-cAMP system in Pseudomonas putida. Environmental Microbiology. 13:324-329. 2011
- The interplay of the EIIA Ntr component of the nitrogen-related phosphotransferase system (PTS Ntr) of Pseudomonas putida with pyruvate dehydrogenase. Biochimica et Biophysica Acta - General Subjects. 1810:995-1005. 2011
- An electro-optical device from a biofilm structure created by bacterial activity. Advanced Materials. 22:4846-4850. 2010
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- Víctor De Lorenzo
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