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Sphingomyelinase D Activity in Model Membranes: Structural Effects of in situ Generation of Ceramide-1-Phosphate

The toxicity of Loxosceles spider venom has been attributed to a rare enzyme, sphingomyelinase D, which transforms sphingomyelin to ceramide-1-phosphate. The bases of its inflammatory and dermonecrotic activity, however, remain unclear. In this work the effects of ceramide-1-phosphate on model membr...

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Autores principales: Stock, Roberto P., Brewer, Jonathan, Wagner, Kerstin, Ramos-Cerrillo, Blanca, Duelund, Lars, Jernshøj, Kit Drescher, Olsen, Lars Folke, Bagatolli, Luis A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3338491/
https://www.ncbi.nlm.nih.gov/pubmed/22558302
http://dx.doi.org/10.1371/journal.pone.0036003
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author Stock, Roberto P.
Brewer, Jonathan
Wagner, Kerstin
Ramos-Cerrillo, Blanca
Duelund, Lars
Jernshøj, Kit Drescher
Olsen, Lars Folke
Bagatolli, Luis A.
author_facet Stock, Roberto P.
Brewer, Jonathan
Wagner, Kerstin
Ramos-Cerrillo, Blanca
Duelund, Lars
Jernshøj, Kit Drescher
Olsen, Lars Folke
Bagatolli, Luis A.
author_sort Stock, Roberto P.
collection PubMed
description The toxicity of Loxosceles spider venom has been attributed to a rare enzyme, sphingomyelinase D, which transforms sphingomyelin to ceramide-1-phosphate. The bases of its inflammatory and dermonecrotic activity, however, remain unclear. In this work the effects of ceramide-1-phosphate on model membranes were studied both by in situ generation of this lipid using a recombinant sphingomyelinase D from the spider Loxosceles laeta and by pre-mixing it with sphingomyelin and cholesterol. The systems of choice were large unilamellar vesicles for bulk studies (enzyme kinetics, fluorescence spectroscopy and dynamic light scattering) and giant unilamellar vesicles for fluorescence microscopy examination using a variety of fluorescent probes. The influence of membrane lateral structure on the kinetics of enzyme activity and the consequences of enzyme activity on the structure of target membranes containing sphingomyelin were examined. The findings indicate that: 1) ceramide-1-phosphate (particularly lauroyl ceramide-1-phosphate) can be incorporated into sphingomyelin bilayers in a concentration-dependent manner and generates coexistence of liquid disordered/solid ordered domains, 2) the activity of sphingomyelinase D is clearly influenced by the supramolecular organization of its substrate in membranes and, 3) in situ ceramide-1-phosphate generation by enzymatic activity profoundly alters the lateral structure and morphology of the target membranes.
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spelling pubmed-33384912012-05-03 Sphingomyelinase D Activity in Model Membranes: Structural Effects of in situ Generation of Ceramide-1-Phosphate Stock, Roberto P. Brewer, Jonathan Wagner, Kerstin Ramos-Cerrillo, Blanca Duelund, Lars Jernshøj, Kit Drescher Olsen, Lars Folke Bagatolli, Luis A. PLoS One Research Article The toxicity of Loxosceles spider venom has been attributed to a rare enzyme, sphingomyelinase D, which transforms sphingomyelin to ceramide-1-phosphate. The bases of its inflammatory and dermonecrotic activity, however, remain unclear. In this work the effects of ceramide-1-phosphate on model membranes were studied both by in situ generation of this lipid using a recombinant sphingomyelinase D from the spider Loxosceles laeta and by pre-mixing it with sphingomyelin and cholesterol. The systems of choice were large unilamellar vesicles for bulk studies (enzyme kinetics, fluorescence spectroscopy and dynamic light scattering) and giant unilamellar vesicles for fluorescence microscopy examination using a variety of fluorescent probes. The influence of membrane lateral structure on the kinetics of enzyme activity and the consequences of enzyme activity on the structure of target membranes containing sphingomyelin were examined. The findings indicate that: 1) ceramide-1-phosphate (particularly lauroyl ceramide-1-phosphate) can be incorporated into sphingomyelin bilayers in a concentration-dependent manner and generates coexistence of liquid disordered/solid ordered domains, 2) the activity of sphingomyelinase D is clearly influenced by the supramolecular organization of its substrate in membranes and, 3) in situ ceramide-1-phosphate generation by enzymatic activity profoundly alters the lateral structure and morphology of the target membranes. Public Library of Science 2012-04-25 /pmc/articles/PMC3338491/ /pubmed/22558302 http://dx.doi.org/10.1371/journal.pone.0036003 Text en Stock et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Stock, Roberto P.
Brewer, Jonathan
Wagner, Kerstin
Ramos-Cerrillo, Blanca
Duelund, Lars
Jernshøj, Kit Drescher
Olsen, Lars Folke
Bagatolli, Luis A.
Sphingomyelinase D Activity in Model Membranes: Structural Effects of in situ Generation of Ceramide-1-Phosphate
title Sphingomyelinase D Activity in Model Membranes: Structural Effects of in situ Generation of Ceramide-1-Phosphate
title_full Sphingomyelinase D Activity in Model Membranes: Structural Effects of in situ Generation of Ceramide-1-Phosphate
title_fullStr Sphingomyelinase D Activity in Model Membranes: Structural Effects of in situ Generation of Ceramide-1-Phosphate
title_full_unstemmed Sphingomyelinase D Activity in Model Membranes: Structural Effects of in situ Generation of Ceramide-1-Phosphate
title_short Sphingomyelinase D Activity in Model Membranes: Structural Effects of in situ Generation of Ceramide-1-Phosphate
title_sort sphingomyelinase d activity in model membranes: structural effects of in situ generation of ceramide-1-phosphate
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3338491/
https://www.ncbi.nlm.nih.gov/pubmed/22558302
http://dx.doi.org/10.1371/journal.pone.0036003
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