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Dive into the research topics where Luis E Trujillo is active.

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Featured researches published by Luis E Trujillo.


Plant Biotechnology Journal | 2010

NmDef02, a novel antimicrobial gene isolated from Nicotiana megalosiphon confers high‐level pathogen resistance under greenhouse and field conditions

Roxana Portieles; Camilo Ayra; Ernesto M González; Araiz Gallo; Raisa Rodríguez; Osmany Chacón; Yunior López; Mayra Rodríguez; Juan Castillo; Merardo Pujol; Gil Enríquez; Carlos Borroto; Luis E Trujillo; Bart P. H. J. Thomma; Orlando Borrás-Hidalgo

Plant defensins are small cysteine-rich peptides that inhibit the growth of a broad range of microbes. In this article, we describe NmDef02, a novel cDNA encoding a putative defensin isolated from Nicotiana megalosiphon upon inoculation with the tobacco blue mould pathogen Peronospora hyoscyami f.sp. tabacina. NmDef02 was heterologously expressed in the yeast Pichia pastoris, and the purified recombinant protein was found to display antimicrobial activity in vitro against important plant pathogens. Constitutive expression of NmDef02 gene in transgenic tobacco and potato plants enhanced resistance against various plant microbial pathogens, including the oomycete Phytophthora infestans, causal agent of the economically important potato late blight disease, under greenhouse and field conditions.


Enzyme and Microbial Technology | 2001

Fructo-oligosaccharides production by the Gluconacetobacter diazotrophicus levansucrase expressed in the methylotrophic yeast Pichia pastoris.

Luis E Trujillo; Juan G. Arrieta; F. Dafhnis; J. Garcı́a; J. Valdés; Y. Tambara; M. Pérez; Lázaro Hernández

Levansucrase (LsdA) (EC 2.4.1.10) from Gluconacetobacter diazotrophicus (formerly Acetobacter diazotrophicus) yields high levels of fructo-oligosaccharides (FOS) from sucrose. A DNA fragment encoding the precursor LsdA lacking the first 57 amino acids was fused to the pho1 signal sequence under the control of the Pichia pastoris-alcohol oxidase 1 (AOX1) promoter. Methanol induction of a P. pastoris strain harboring a single copy of the lsdA expression cassette integrated in the genome resulted in the production of active levansucrase. After fermentation of the recombinant yeast, LsdA activity was detected in the periplasmic fraction (81%) and in the culture supernatant (18%) with an overall yield of 1% of total protein. The recombinant LsdA was glycosylated and displayed optimal pH and temperature for enzyme activity similar to those of the native enzyme, but thermal stability was increased. Neither fructosylpolymerase activity nor FOS production was affected. Incubation of recombinant LsdA in sucrose (500 g l(-1)) yielded 43% (w/w) of total sugar as 1-kestose, with a conversion efficiency about 70%. Intact recombinant yeast cells also converted sucrose to FOS although for a 30% efficiency.


Journal of Bacteriology | 2004

A Type II Protein Secretory Pathway Required for Levansucrase Secretion by Gluconacetobacter diazotrophicus

Juan G. Arrieta; Mailin Sotolongo; Carmen Menéndez; Dubiel Alfonso; Luis E Trujillo; Melvis Soto; Ricardo Ramírez; Lázaro Hernández

The endophytic diazotroph Gluconacetobacter diazotrophicus secretes a constitutively expressed levansucrase (LsdA, EC 2.4.1.10) to utilize plant sucrose. LsdA, unlike other extracellular levansucrases from gram-negative bacteria, is transported to the periplasm by a signal-peptide-dependent pathway. We identified an unusually organized gene cluster encoding at least the components LsdG, -O, -E, -F, -H, -I, -J, -L, -M, -N, and -D of a type II secretory system required for LsdA translocation across the outer membrane. Another open reading frame, designated lsdX, is located between the operon promoter and lsdG, but it was not identified in BLASTX searches of the DDBJ/EMBL/GenBank databases. The lsdX, -G, and -O genes were isolated from a cosmid library of strain SRT4 by complementation of an ethyl methanesulfonate mutant unable to transport LsdA across the outer membrane. The downstream genes lsdE, -F, -H, -I, -J, -L, -M, -N, and -D were isolated through chromosomal walking. The high G+C content (64 to 74%) and the codon usage of the genes identified are consistent with the G+C content and codon usage of the standard G. diazotrophicus structural gene. Sequence analysis of the gene cluster indicated that a polycistronic transcript is synthesized. Targeted disruption of lsdG, lsdO, or lsdF blocked LsdA secretion, and the bacterium failed to grow on sucrose. Replacement of Cys(162) by Gly at the C terminus of the pseudopilin LsdG abolished the protein functionality, suggesting that there is a relationship with type IV pilins. Restriction fragment length polymorphism analysis revealed conservation of the type II secretion operon downstream of the levansucrase-levanase (lsdA-lsdB) locus in 14 G. diazotrophicus strains representing 11 genotypes recovered from four different host plants in diverse geographical regions. To our knowledge, this is the first report of a type II pathway for protein secretion in the Acetobacteraceae.


Applied Microbiology and Biotechnology | 2013

Constitutive high-level expression of a codon-optimized β-fructosidase gene from the hyperthermophile Thermotoga maritima in Pichia pastoris

Carmen Menéndez; Duniesky Martínez; Luis E Trujillo; Yuliet Mazola; Ernesto M González; Enrique R Pérez; Lázaro Hernández

Enzymes for use in the sugar industry are preferred to be thermotolerant. In this study, a synthetic codon-optimized gene encoding a highly thermostable β-fructosidase (BfrA, EC 3.2.1.26) from the bacterium Thermotoga maritima was expressed in the yeast Pichia pastoris. The gradual increase of the transgene dosage from one to four copies under the control of the constitutive glyceraldehyde 3-phosphate dehydrogenase promoter had an additive effect on BfrA yield without causing cell toxicity. Maximal values of cell biomass (115xa0g/l, dry weight) and overall invertase activity (241xa0U/ml) were reached at 72xa0h in fed-batch fermentations using cane sugar as the main carbon source for growth. Secretion driven by the Saccharomyces cerevisiae α-factor signal peptide resulted in periplasmic retention (44xa0%) and extracellular release (56xa0%) of BfrA. The presence of N-linked oligosaccharides did not influence the optimal activity, thermal stability, kinetic properties, substrate specificity, and exo-type action mode of the yeast-secreted BfrA in comparison to the native unglycosylated enzyme. Complete inversion of cane sugar at initial concentration of 60xa0% (w/v) was achieved by periplasmic BfrA in undisrupted cells reacting at pH 5.5 and 70xa0°C, with average productivity of 4.4xa0g of substrate hydrolyzed per grams of biomass (wet weight) per hour. The high yield of fully active glycosylated BfrA here attained by recombinant P. pastoris in a low-cost fermentation process appears to be attractive for the large-scale production of this thermostable enzyme useful for the manufacture of inverted sugar syrup.


Journal of Biotechnology | 2011

High levan accumulation in transgenic tobacco plants expressing the Gluconacetobacter diazotrophicus levansucrase gene.

Alexander Banguela; Juan G. Arrieta; Raisa Rodríguez; Luis E Trujillo; Carmen Menéndez; Lázaro Hernández

Bacterial levansucrase (EC 2.4.1.10) converts sucrose into non-linear levan consisting of long β(2,6)-linked fructosyl chains with β(2,1) branches. Bacterial levan has wide food and non-food applications, but its production in industrial reactors is costly and low yielding. Here, we report the constitutive expression of Gluconacetobacter diazotrophicus levansucrase (LsdA) fused to the vacuolar targeting pre-pro-peptide of onion sucrose:sucrose 1-fructosyltransferase (1-SST) in tobacco, a crop that does not naturally produce fructans. In the transgenic plants, levan with degree of polymerization above 10(4) fructosyl units was detected in leaves, stem, root, and flowers, but not in seeds. High levan accumulation in leaves led to gradual phenotypic alterations that increased with plant age through the flowering stage. In the transgenic lines, the fructan content in mature leaves varied from 10 to 70% of total dry weight. No oligofructans were stored in the plant organs, although the in vitro reaction of transgenic LsdA with sucrose yielded β(2,1)-linked FOS and levan. Transgenic lines with levan representing up to 30mgg(-1) of fresh leaf weight produced viable seeds and the polymer accumulation remained stable in the tested T1 and T2 progenies. The lsdA-expressing tobacco represents an alternative source of highly polymerized levan.


Journal of Microbial & Biochemical Technology | 2015

Kinetics of Sucrose Hydrolysis by Immobilized Recombinant Pichia pastoris Cells in a Batch reactors

Duniesky Martínez; Carmen Menéndez; Félix M Echemendia; Lázaro Hernández; Alina Sobrino; Luis E Trujillo; Iván González Rodríguez; Enrique R Pérez

Sucrose hydrolysis was carried out in a constant-volume batch reactor, using recombinant Pichia pastoris BfrA4X whole cells expressing Thermotoga maritima invertase, entrapped in calcium alginate beads. The kinetics of the enzymatic hydrolysis of sucrose by the biocatalyst was examined at substrate concentrations ranging between 0.03 M and 2.04 M. The reaction rate increases until 0.31 M after which the reaction velocity was constant until 1.16 M, above this concentration, the reaction rate decreases with increasing sucrose concentration. The experimental data obtained with two weight of the biocatalyst were incorporated into two kinetic models to predict the reaction time needed for sucrose hydrolysis. One model was applied for sucrose concentrations bellow 1.16 M while a second one could be used at inhibitory range between 1.46 and 2.04 M with a k value as function of initial sucrose concentration and biocatalyst weight.


Microbial Cell Factories | 2014

Complete sucrose hydrolysis by heat-killed recombinant Pichia pastoris cells entrapped in calcium alginate

Duniesky Martínez; Carmen Menéndez; Félix M Echemendia; Enrique R Pérez; Luis E Trujillo; Alina Sobrino; Ricardo Ramírez; Yamira Quintero; Lázaro Hernández

BackgroundAn ideal immobilized biocatalyst for the industrial-scale production of invert sugar should stably operate at elevated temperatures (60-70°C) and high sucrose concentrations (above 60%, w/v). Commercial invertase from the yeast Saccharomyces cerevisiae is thermolabile and suffers from substrate inhibition. Thermotoga maritima β-fructosidase (BfrA) is the most thermoactive and thermostable sucrose-hydrolysing enzyme so far identified and allows complete inversion of the substrate in highly concentrated solutions.ResultsIn this study, heat-killed Pichia pastoris cells bearing N-glycosylated BfrA in the periplasmic space were entrapped in calcium alginate beads. The immobilized recombinant yeast showed maximal sucrose hydrolysis at pHxa05–7 and 90°C. BfrA was 65% active at 60°C and had no activity loss after incubation without the substrate at this temperature for 15xa0h. Complete inversion of cane sugar (2.04xa0M) at 60°C was achieved in batchwise and continuous operation with respective productivities of 4.37 and 0.88 gram of substrate hydrolysed per gram of dry beads per hour. The half-life values of the biocatalyst were 14 and 20xa0days when operated at 60°C in the stirred tank and the fixed-bed column, respectively. The reaction with non-viable cells prevented the occurrence of sucrose fermentation and the formation of by-products. Six-month storage of the biocatalyst in 1.46xa0M sucrose (pHxa05.5) at 4°C caused no reduction of the invertase activity.ConclusionsThe features of the novel thermostable biocatalyst developed in this study are more attractive than those of immobilized S. cerevisiae cells for application in the enzymatic manufacture of inverted sugar syrup in batch and fixed-bed reactors.


Biotecnología Aplicada | 2009

Engineering drought and salt tolerance in plants using SodERF3, a novel sugarcane ethylene responsive factor

Luis E Trujillo; Carmen Menéndez; María E Ochogavía; Ingrid Hernández; Orlando Borrás; Raisa Rodríguez; Yamilet Coll; Juan G. Arrieta; Alexander Banguela; Ricardo Ramírez; Lázaro Hernández


Biotecnología Aplicada | 2012

Production of highly polymerized bacterial levan in two eukaryotic hosts of biotechnological interest

Alexander Banguela; Luis E Trujillo; Juan G. Arrieta; Raisa Rodríguez; Enrique R Pérez; Carmen Menéndez; Ricardo Ramírez; Merardo Pujol; Carlos Borroto; Lázaro Hernández


Electronic Journal of Biotechnology | 2017

Scaling-up batch conditions for efficient sucrose hydrolysis catalyzed by an immobilized recombinant Pichia pastoris cells in a stirrer tank reactor

Duniesky Martínez; Carmen Menéndez; Lázaro Hernández; Alina Sobrino; Luis E Trujillo; Iván González Rodríguez; Enrique R Pérez

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Enrique R Pérez

Hospital Universitario La Paz

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Merardo Pujol

United States Department of Agriculture

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Carlos Borroto

United States Department of Agriculture

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