0000000000673551

AUTHOR

Daniela Fiocco

0000-0002-3654-0362

showing 3 related works from this author

Inactivation of the ftsH gene of Lactobacillus plantarum WCFS1: Effects on growth, stress tolerance, cell surface properties and biofilm formation

2012

FtsH proteins are ubiquitous membrane-bound, ATP-dependent metalloproteases of the AAA family. In eubacteria, FtsH is involved in protein quality control under stress conditions. Lactobacillus plantarum is a widespread lactic acid bacterium that is encountered in several fermented food, including dairy products, vegetables and meat. In the present work the expression of the ftsH gene of L. plantarum was studied by quantitative real time RT-PCR in bacterial cultures subjected to various abiotic stresses. Both oxidative stress and addition of a membrane-fluidizing agent induced ftsH transcription, while a depletion of carbon-source repressed its mRNA level. Mutants deprived of the FtsH protea…

Surface Propertiesmedicine.medical_treatmentMutantReal-Time Polymerase Chain Reactionmedicine.disease_causeMicrobiologyMicrobiologyATP-Dependent ProteasesBacterial ProteinsStress PhysiologicalTranscription (biology)medicineGeneProteasebiologyReverse Transcriptase Polymerase Chain ReactionGene Expression ProfilingTemperatureBiofilmbiology.organism_classificationBiochemistryBiofilmsSaltsProtein qualityGene DeletionLactobacillus plantarumOxidative stressLactobacillus plantarumMicrobiological Research
researchProduct

Inactivation of a small heat shock protein affects cell morphology and membrane fluidity in Lactobacillus plantarum WCFS1.

2011

A small heat shock gene of Lactobacillus plantarum strain WCFS1 was deleted using a Cre-lox based system. Compared to the wild type, the ∆hsp 18.55 mutant strain displayed a similar growth rate when cultivated either under optimal temperature or under different stress conditions such as heat, low pH and salt stress. However, a longer lag phase was observed when the ∆hsp 18.55 mutant strain was cultivated under short intense heat stress (50 °C). This suggests that the hsp 18.55 gene of L. plantarum may be involved in recovery of L. plantarum stressed cells in the early stage of high temperature stress. In addition, morphology of the mutant cells, investigated by scanning electron microscopy,…

biologyStrain (chemistry)Membrane FluiditySurface PropertiesWild typefood and beveragesGeneral Medicinebiology.organism_classificationCell morphologyMicrobiologyHeat-Shock Proteins SmallMembraneBiochemistryBacterial ProteinsHeat shock proteinMembrane fluidityBiophysicsGene SilencingMolecular BiologyBacteriaLactobacillus plantarumLactobacillus plantarumResearch in microbiology
researchProduct

Characterization of the CtsR stress response regulon in Lactobacillus plantarum.

2010

ABSTRACT Lactobacillus plantarum ctsR was characterized. ctsR was found to be cotranscribed with clpC and induced in response to various abiotic stresses. ctsR deletion conferred a heat-sensitive phenotype with peculiar cell morphological features. The transcriptional pattern of putative CtsR regulon genes was examined in the Δ ctsR mutant. Direct CtsR-dependent regulation was demonstrated by DNA-binding assays using recombinant CtsR and the promoters of the ctsR - clpC operon and hsp1 .

OperonMutantBiology[ SDV.MP.BAC ] Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyMicroscopy Atomic ForceMicrobiologyRegulonMicrobiologylaw.invention03 medical and health sciencesBacterial ProteinslawGene RegulationPromoter Regions GeneticMolecular BiologyGeneHeat-Shock Proteins030304 developmental biologyGenetics0303 health sciences030306 microbiologyReverse Transcriptase Polymerase Chain ReactionTemperaturePromoterGene Expression Regulation Bacterialbiology.organism_classificationPhenotype[SDV.MP.BAC]Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyRepressor ProteinsRegulonRecombinant DNALactobacillus plantarumProtein BindingLactobacillus plantarum
researchProduct