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Key Role of Polyphosphoinositides in Dynamics of Fusogenic Nuclear Membrane Vesicles

The role of phosphoinositides has been thoroughly described in many signalling and membrane trafficking events but their function as modulators of membrane structure and dynamics in membrane fusion has not been investigated. We have reconstructed models that mimic the composition of nuclear envelope...

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Autores principales: Zhendre, Vanessa, Grélard, Axelle, Garnier-LHomme, Marie, Buchoux, Sébastien, Larijani, Banafshé, Dufourc, Erick J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3169559/
https://www.ncbi.nlm.nih.gov/pubmed/21931619
http://dx.doi.org/10.1371/journal.pone.0023859
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author Zhendre, Vanessa
Grélard, Axelle
Garnier-LHomme, Marie
Buchoux, Sébastien
Larijani, Banafshé
Dufourc, Erick J.
author_facet Zhendre, Vanessa
Grélard, Axelle
Garnier-LHomme, Marie
Buchoux, Sébastien
Larijani, Banafshé
Dufourc, Erick J.
author_sort Zhendre, Vanessa
collection PubMed
description The role of phosphoinositides has been thoroughly described in many signalling and membrane trafficking events but their function as modulators of membrane structure and dynamics in membrane fusion has not been investigated. We have reconstructed models that mimic the composition of nuclear envelope precursor membranes with naturally elevated amounts of phosphoinositides. These fusogenic membranes (membrane vesicle 1(MV1) and nuclear envelope remnants (NER) are critical for the assembly of the nuclear envelope. Phospholipids, cholesterol, and polyphosphoinositides, with polyunsaturated fatty acid chains that were identified in the natural nuclear membranes by lipid mass spectrometry, have been used to reconstruct complex model membranes mimicking nuclear envelope precursor membranes. Structural and dynamic events occurring in the membrane core and at the membrane surface were monitored by solid-state deuterium and phosphorus NMR. “MV1-like” (PC∶PI∶PIP∶PIP(2), 30∶20∶18∶12, mol%) membranes that exhibited high levels of PtdIns, PtdInsP and PtdInsP(2) had an unusually fluid membrane core (up to 20% increase, compared to membranes with low amounts of phosphoinositides to mimic the endoplasmic reticulum). “NER-like” (PC∶CH∶PI∶PIP∶PIP(2), 28∶42∶16∶7∶7, mol%) membranes containing high amounts of both cholesterol and phosphoinositides exhibited liquid-ordered phase properties, but with markedly lower rigidity (10–15% decrease). Phosphoinositides are the first lipids reported to counterbalance the ordering effect of cholesterol. At the membrane surface, phosphoinositides control the orientation dynamics of other lipids in the model membranes, while remaining unchanged themselves. This is an important finding as it provides unprecedented mechanistic insight into the role of phosphoinositides in membrane dynamics. Biological implications of our findings and a model describing the roles of fusogenic membrane vesicles are proposed.
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spelling pubmed-31695592011-09-19 Key Role of Polyphosphoinositides in Dynamics of Fusogenic Nuclear Membrane Vesicles Zhendre, Vanessa Grélard, Axelle Garnier-LHomme, Marie Buchoux, Sébastien Larijani, Banafshé Dufourc, Erick J. PLoS One Research Article The role of phosphoinositides has been thoroughly described in many signalling and membrane trafficking events but their function as modulators of membrane structure and dynamics in membrane fusion has not been investigated. We have reconstructed models that mimic the composition of nuclear envelope precursor membranes with naturally elevated amounts of phosphoinositides. These fusogenic membranes (membrane vesicle 1(MV1) and nuclear envelope remnants (NER) are critical for the assembly of the nuclear envelope. Phospholipids, cholesterol, and polyphosphoinositides, with polyunsaturated fatty acid chains that were identified in the natural nuclear membranes by lipid mass spectrometry, have been used to reconstruct complex model membranes mimicking nuclear envelope precursor membranes. Structural and dynamic events occurring in the membrane core and at the membrane surface were monitored by solid-state deuterium and phosphorus NMR. “MV1-like” (PC∶PI∶PIP∶PIP(2), 30∶20∶18∶12, mol%) membranes that exhibited high levels of PtdIns, PtdInsP and PtdInsP(2) had an unusually fluid membrane core (up to 20% increase, compared to membranes with low amounts of phosphoinositides to mimic the endoplasmic reticulum). “NER-like” (PC∶CH∶PI∶PIP∶PIP(2), 28∶42∶16∶7∶7, mol%) membranes containing high amounts of both cholesterol and phosphoinositides exhibited liquid-ordered phase properties, but with markedly lower rigidity (10–15% decrease). Phosphoinositides are the first lipids reported to counterbalance the ordering effect of cholesterol. At the membrane surface, phosphoinositides control the orientation dynamics of other lipids in the model membranes, while remaining unchanged themselves. This is an important finding as it provides unprecedented mechanistic insight into the role of phosphoinositides in membrane dynamics. Biological implications of our findings and a model describing the roles of fusogenic membrane vesicles are proposed. Public Library of Science 2011-09-08 /pmc/articles/PMC3169559/ /pubmed/21931619 http://dx.doi.org/10.1371/journal.pone.0023859 Text en Zhendre 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
Zhendre, Vanessa
Grélard, Axelle
Garnier-LHomme, Marie
Buchoux, Sébastien
Larijani, Banafshé
Dufourc, Erick J.
Key Role of Polyphosphoinositides in Dynamics of Fusogenic Nuclear Membrane Vesicles
title Key Role of Polyphosphoinositides in Dynamics of Fusogenic Nuclear Membrane Vesicles
title_full Key Role of Polyphosphoinositides in Dynamics of Fusogenic Nuclear Membrane Vesicles
title_fullStr Key Role of Polyphosphoinositides in Dynamics of Fusogenic Nuclear Membrane Vesicles
title_full_unstemmed Key Role of Polyphosphoinositides in Dynamics of Fusogenic Nuclear Membrane Vesicles
title_short Key Role of Polyphosphoinositides in Dynamics of Fusogenic Nuclear Membrane Vesicles
title_sort key role of polyphosphoinositides in dynamics of fusogenic nuclear membrane vesicles
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3169559/
https://www.ncbi.nlm.nih.gov/pubmed/21931619
http://dx.doi.org/10.1371/journal.pone.0023859
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