Search results for " Antimicrobial peptide"

showing 10 items of 19 documents

Inducible ASABF-Type Antimicrobial Peptide from the Sponge Suberites domuncula: Microbicidal and Hemolytic Activity in Vitro and Toxic Effect on Moll…

2011

Since sponges, as typical filter-feeders, are exposed to a high load of attacking prokaryotic and eukaryotic organisms, they are armed with a wide arsenal of antimicrobial/cytostatic low-molecular-weight, non-proteinaceous bioactive compounds. Here we present the first sponge agent belonging to the group of ASABF-type antimicrobial peptides. The ASABF gene was identified and cloned from the demospongeSuberites domuncula. The mature peptide, with a length of 64 aa residues has a predicted pI of 9.24, and comprises the characteristic CSαβ structural motif. Consequently, the S. domuncula ASABF shares high similarity with the nematode ASABFs ; it is distantly related to the defensins. The recom…

ASABFAntimicrobial peptidesGastropodaMolecular Sequence DataPharmaceutical SciencePeptideMicrobial Sensitivity TestsGram-Positive BacteriaReal-Time Polymerase Chain ReactionArticleMicrobiology03 medical and health sciencesantimicrobial peptidesAnti-Infective AgentsSequence Analysis ProteinDrug DiscoveryAnimalsBittium sp.Structural motiflcsh:QH301-705.5Pharmacology Toxicology and Pharmaceutics (miscellaneous)spongesPhylogeny030304 developmental biologychemistry.chemical_classification0303 health sciencesbiology030306 microbiologyEffectorHemolytic AgentsapoptosisGeologyBittium spsponges; <em>Suberites domuncula</em>; ASABF; antimicrobial peptides; apoptosis; <em>Bittium</em> sp.biology.organism_classificationSuberites domunculasponges ; Suberites domuncula ; ASABF ; antimicrobial peptides ; apoptosis ; Bittium sp.Recombinant ProteinsSuberites domunculaSpongeEnzymelcsh:Biology (General)chemistryMolluscaSuberitesSuberitesAntimicrobial Cationic PeptidesMarine Drugs
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BIOACTIVE MOLECULES FROM MARINE INVERTEBRATE ORGANISMS AS POTENTIAL TOOLS IN RESTORATION PROCEDURES

2013

In the last decades molecular biology has provided innovative approaches in order to set up specific protocols for the conservation and restoration of cultural assets. In this study, which falls within the so called field of Blue-biotechnology, new bio-reactive peptides isolated from marine invertebrate organisrns (Cnidaria and Molluscs) were tested aim to bio-cleaning (proteolytic- peptides) the surfaces or to control (antimicrobial-peptides) the colonization of historic-artistic manufacts by fungi or bacteria. Particularly, the proteolytic-peptides showed hydrolytic activity, specific for animal-glue, in a range of temperatures of 4-37°C; than acting without heating the surface, by a cont…

Applied biotechnology Biocleaning Antimicrobial peptideSettore BIO/03 - Botanica Ambientale E Applicata
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Marine organisms as source of bioactive molecules applied in restoration projects

2015

Abstract In recent decades research in the conservation and restoration field has provided sustainable alternatives to traditional procedures for cleaning or controlling the microbial colonization of works of art. In the present study, for the first time novel bioactive molecules extracted from marine invertebrate organisms (Anthozoa) were tested instead of chemical compounds for removing protein layers or as a biocide for controlling fungal or bacterial colonization. In particular, Bioactive Molecules with Protease activity (BMP), acting in a temperature range of 4- 30°C, were tested for the hydrolysis of protein layers on laboratory specimens. The cleaning protocol provides a selective pr…

ArcheologyBiocideProteaseMarine invertebrate Biocleaning Protein layer Protease Antimicrobial peptides Biodegradation controlbiologymedicine.medical_treatmentMicrococcusBioactive moleculesConservationBacterial growthAspergillus sojaebiology.organism_classificationAntimicrobialMinimum inhibitory concentrationMarine organismPenicilliumSettore BIO/03 - Botanica Ambientale E ApplicatamedicineFood science
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Localization of antimicrobial peptides in the tunic of Ciona intestinalis (Ascidiacea, Tunicata) and their involvement in local inflammatory-like rea…

2011

AbstractTunicates comprising a wide variety of different species synthesize antimicrobial peptides as important effector molecules of the innate immune system. Recently, two putative gene families coding for antimicrobial peptides were identified in the expressed sequence tag database of the tunicate Ciona intestinalis. Two synthetic peptides representing the cationic core region of one member of each of the families displayed potent antibacterial and antifungal activities. Moreover, the natural peptides were demonstrated to be synthesized and stored in distinct hemocyte types. Here, we investigated the presence of these natural peptides, namely Ci-MAM-A and Ci-PAP-A, in the tunic of C. int…

Innate immunityInnate immune systembiologyCiona intestinaliEffectorShort CommunicationImmunologyAntimicrobial peptidesTunicatebiology.organism_classificationCiona intestinalisTunicateTunicatesBiochemistryPutative geneImmunologyAntimicrobial peptidesCiona intestinalisTunicAntimicrobial peptideInnate immunity; Antimicrobial peptides; Tunic; Ciona intestinalis; Tunicates;PathogenAscidiaceaResults in Immunology
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Immune mediators of sea-cucumber Holothuria tubulosa (Echinodermata) as source of novel antimicrobial and anti-staphylococcal biofilm agents

2013

The present study aims to investigate coelomocytes, immune mediators cells in the echinoderm Holothuria tubulosa, as an unusual source of antimicrobial and antibiofilm agents. The activity of the 5kDa peptide fraction of the cytosol from H. tubulosa coelomocytes (5-HCC) was tested against a reference group of Gram-negative and Gram-positive human pathogens. Minimal inhibitory concentrations (MICs) ranging from 125 to 500 mg/ml were determined against tested strains. The observed biological activity of 5-HCC could be due to two novel peptides, identified by capillary RP-HPLC/nESI-MS/MS, which present the common chemical-physical characteristics of antimicrobial peptides. Such peptides were c…

Innate immunityInnate immune systembiologyPseudomonas aeruginosamedicine.drug_classBiofilm; Staphylococci; Antimicrobial peptides (AMP)BiofilmAntimicrobial peptidesHolothuria tubulosaAntibioticsBiophysicsBiofilmAntimicrobial peptides (AMP)Biological activitymedicine.disease_causeAntimicrobialbiology.organism_classificationSettore BIO/19 - Microbiologia GeneraleApplied Microbiology and BiotechnologyBiofilm Staphylococci Antimicrobial peptides (AMP) Innate immunityMicrobiologymedicineOriginal ArticleStaphylococci
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Identification, cloning and environmental factors modulation of a αβ defensin from the lessepsian invasive mussel Brachidontes pharaonis (Bivalvia: M…

2015

International audience; Immunological effectors of invasive species playing a role in addressing new colonization are still poorly studied. In the present study the cDNA sequence of the defensin from a Lessepsian invasive species, the Red Sea mussel Brachidontes pharaonis, was cloned using RACE method. Defensins are a class of widely known antimicrobial peptides (AMPs), oligopeptides with a broad spectrum of targeted organisms ranging from viruses to parasites. Analysis of BpDef sequence (262 bp) revealed the presence of an ORF coding for 81 amino acids. The full-length amino acid sequence showed the highest similarity to antimicrobial peptides MGD1 and MGD2 sequence from Mytilus galloprovi…

Lessepsian mussellcsh:Biology (General)Antimicrobial peptides (AMPs)antimicrobial peptide defensine invasive speciesenvironmental stress effectBrachidontes pharaonis[SDU.STU.HY]Sciences of the Universe [physics]/Earth Sciences/Hydrologylcsh:QH301-705.5Brachidontes pharaonis; Antimicrobial peptides (AMPs); defensin; Lessepsian mussel; environmental stress effectdefensin
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(19)F NMR screening of unrelated antimicrobial peptides shows that membrane interactions are largely governed by lipids.

2014

AbstractMany amphiphilic antimicrobial peptides permeabilize bacterial membranes via successive steps of binding, re-alignment and/or oligomerization. Here, we have systematically compared the lipid interactions of two structurally unrelated peptides: the cyclic β-pleated gramicidin S (GS), and the α-helical PGLa. 19F NMR was used to screen their molecular alignment in various model membranes over a wide range of temperatures. Both peptides were found to respond to the phase state and composition of these different samples in a similar way. In phosphatidylcholines, both peptides first bind to the bilayer surface. Above a certain threshold concentration they can re-align and immerse more dee…

Membrane lipidsAntimicrobial peptidesAmphiphilic antimicrobial peptidesLipid BilayersBiophysicsBiochemistryProtein Structure Secondarychemistry.chemical_compoundMembrane LipidsHumansAmino Acid SequenceProtein PrecursorsLipid bilayerNuclear Magnetic Resonance BiomolecularBacteriaBilayerPeripheral membrane proteinLipid compositionCell MembraneGramicidinBiological membraneRe-alignment in membraneCell BiologyMembraneBiochemistrychemistryGramicidinBiophysicsBacterial membranesSpontaneous curvatureSolid state 19F NMR structure analysis
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A Novel Peptide with Antifungal Activity from Red Swamp Crayfish Procambarus clarkii

2022

The defense system of freshwater crayfish Procambarus clarkii as a diversified source of bioactive molecules with antimicrobial properties was studied. Antimicrobial activity of two polypeptide-enriched extracts obtained from hemocytes and hemolymph of P. clarkii were assessed against Gram positive (Staphylococcus aureus, Enterococcus faecalis) and Gram negative (Pseudomonas aeruginosa, Escherichia coli) bacteria and toward the yeast Candida albicans. The two peptide fractions showed interesting MIC values (ranging from 11 to 700 μg/mL) against all tested pathogens. Polypeptide-enriched extracts were further investigated using a high-resolution mass spectrometry and database search and 14 n…

Microbiology (medical)Infectious Diseasescrustacean antimicrobial peptides; antibiotic resistant strains; high-resolution mass spectrometry; antibiofilm activity; <i>Candida albicans</i>Candida albicansantibiofilm activityPharmacology (medical)crustacean antimicrobial peptideshigh-resolution mass spectrometryGeneral Pharmacology Toxicology and PharmaceuticsBiochemistryMicrobiologyantibiotic resistant strains
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The conservation and diversity of ascidian cells and molecules involved in the inflammatory reaction: The Ciona robusta model

2021

Ascidians are marine invertebrate chordates belonging to the earliest branch (Tunicata) in the chordate phylum, therefore, they are of interest for studying the evolution of immune systems. Due to the known genome, the non-colonial Ciona robusta, previously considered to be C. intestinalis type A, is a model species for the study of inflammatory response. The internal defense of ascidians mainly relies on hemocytes circulating in the hemolymph and pharynx. Hemocytes can be in vivo challenged by LPS injection and various granulocyte and vacuolated cell populations differentiated to produce and release inflammatory factors. Molecular biology and gene expression studies revealed complex defens…

Regulation of gene expressionLipopolysaccharidesHemocytesAntimicrobial peptidesSettore BIO/05 - ZoologiaCollectinAscidians Ciona robusta Gene expression Immunocytes In situ hybridization Inflammation Animals Antimicrobial Peptides Hemocytes Lipopolysaccharides Phylogeny Ciona intestinalisChordateGeneral MedicineAquatic ScienceBiologybiology.organism_classificationCell biologyCiona intestinalisAscidians Ciona robusta; Inflammation; Immunocytes; In situ hybridization; Gene ExpressionHemolymphEnvironmental ChemistryGene familyAnimalsGeneAntimicrobial PeptidesPhylogenyGalectin
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Cnidarian inflammatory reaction and bioactive molecules: from multifunctional role to cultural heritage applications

2015

The renewed interest in the study of genes of immunity in Cnidaria has led to additional information to the scenario of the first stages of immunity evolution revealing the cellular processes involved in symbiosis, in the regulation of homeostasis and in the fight against infections. We investigated the inflammatory response in Anemonia sulcata (Cnidaria: Anthozoa), following injection of various substances different in type and dimension, and observed clear, strong and specific reactions especially after injection of bacteria. The enzymes evaluation (protease, phosphatase and esterase), showing how the injection of different bacterial strains alters the expression of these enzymes suggesti…

Settore BIO/05 - Zoologiainflammation Cnidarian cultural heritage Bioactive molecules Antimicrobial peptide
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