0000000000656589

AUTHOR

Michel-robert Popoff

showing 2 related works from this author

A comparative biochemical, pharmacological and immunological study of Clostridium novyi alpha-toxin, C. difficile toxin B and C. sordellii lethal tox…

1991

The three clostridial cytotoxins, i.e. alpha-toxin of C. novyi (Tox alpha-nov), toxin B of C. difficile (ToxB-dif) and lethal toxin of C. sordellii (LT-sor) consist of single peptide chains of about 200,000 (Tox alpha-nov), 250,000 (LT-sor) and 275,000 (ToxB-dif) mol. wts. ToxB-dif and LT-sor but not Tox alpha-nov cross-reacted with rabbit polyclonal antibodies. Toxicity upon i.v. injection in mice was similar (LD50, 100 hr, 50-200 ng/kg) and was characterized by a slowly developing fluid loss into the interstitial space. When injected into the rat paw the toxins caused a delayed local edema lasting for days. In vitro the three toxins provoked a persistent retraction of endothelial cells cu…

Bacterial ToxinsClostridium sordelliiClostridium difficile toxin BChick EmbryoBiologyPulmonary ArteryToxicologymedicine.disease_causeMedian lethal doseMicrobiologyLethal Dose 50chemistry.chemical_compoundMiceBacterial ProteinsmedicineAnimalsMicroscopy Phase-ContrastUridineCells CulturedClostridiumAdenosine Diphosphate RiboseToxinClostridioides difficileCytotoxinsRats Inbred Strainsbiology.organism_classificationClostridium novyiUridineRatsEndothelial stem cellchemistryADP-ribosylationPotassiumFemaleEndothelium VascularToxicon : official journal of the International Society on Toxinology
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In Silico Conformational Features of Botulinum Toxins A1 and E1 According to Intraluminal Acidification

2022

International audience; Although botulinum neurotoxins (BoNTs) are among the most toxic compounds found in nature, their molecular mechanism of action is far from being elucidated. A key event is the conformational transition due to acidification of the interior of synaptic vesicles, leading to translocation of the BoNT catalytic domain into the neuronal cytosol. To investigate these conformational variations, homology modeling and atomistic simulations are combined to explore the internal dynamics of the sub-types BoNT/A1 (the most-used sub-type in medical applications) and BoNT/E1 (the most kinetically efficient sub-type). This first simulation study of di-chain BoNTs in closed and open s…

<i>Clostridium botulinum</i>; botulinum toxin; molecular dynamics; residue protonation; homology modeling[SDV.BBM.BS]Life Sciences [q-bio]/Biochemistry Molecular Biology/Structural Biology [q-bio.BM][SDV.BBM.BS] Life Sciences [q-bio]/Biochemistry Molecular Biology/Structural Biology [q-bio.BM]Health Toxicology and Mutagenesismolecular dynamichomology modelingresidue protonation[SDV.BBM.BP] Life Sciences [q-bio]/Biochemistry Molecular Biology/BiophysicsHydrogen-Ion ConcentrationToxicology[SDV.MP.BAC]Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologySettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)molecular dynamics[SDV.BBM.BP]Life Sciences [q-bio]/Biochemistry Molecular Biology/BiophysicsGangliosidesSolventsClostridium botulinumbotulinum toxinBotulinum Toxins Type A[SDV.MP.BAC] Life Sciences [q-bio]/Microbiology and Parasitology/Bacteriology[INFO.INFO-BI]Computer Science [cs]/Bioinformatics [q-bio.QM][INFO.INFO-BI] Computer Science [cs]/Bioinformatics [q-bio.QM]
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