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Lipid–Protein Interactions Are Unique Fingerprints for Membrane Proteins

[Image: see text] Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our current understanding of the detailed organization of cell membranes remains rather elusive, because of the challenge to study fluctuating nanoscale assemblies of lipids and proteins...

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Autores principales: Corradi, Valentina, Mendez-Villuendas, Eduardo, Ingólfsson, Helgi I., Gu, Ruo-Xu, Siuda, Iwona, Melo, Manuel N., Moussatova, Anastassiia, DeGagné, Lucien J., Sejdiu, Besian I., Singh, Gurpreet, Wassenaar, Tsjerk A., Delgado Magnero, Karelia, Marrink, Siewert J., Tieleman, D. Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2018
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6028153/
https://www.ncbi.nlm.nih.gov/pubmed/29974066
http://dx.doi.org/10.1021/acscentsci.8b00143
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author Corradi, Valentina
Mendez-Villuendas, Eduardo
Ingólfsson, Helgi I.
Gu, Ruo-Xu
Siuda, Iwona
Melo, Manuel N.
Moussatova, Anastassiia
DeGagné, Lucien J.
Sejdiu, Besian I.
Singh, Gurpreet
Wassenaar, Tsjerk A.
Delgado Magnero, Karelia
Marrink, Siewert J.
Tieleman, D. Peter
author_facet Corradi, Valentina
Mendez-Villuendas, Eduardo
Ingólfsson, Helgi I.
Gu, Ruo-Xu
Siuda, Iwona
Melo, Manuel N.
Moussatova, Anastassiia
DeGagné, Lucien J.
Sejdiu, Besian I.
Singh, Gurpreet
Wassenaar, Tsjerk A.
Delgado Magnero, Karelia
Marrink, Siewert J.
Tieleman, D. Peter
author_sort Corradi, Valentina
collection PubMed
description [Image: see text] Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our current understanding of the detailed organization of cell membranes remains rather elusive, because of the challenge to study fluctuating nanoscale assemblies of lipids and proteins with the required spatiotemporal resolution. Here, we use molecular dynamics simulations to characterize the lipid environment of 10 different membrane proteins. To provide a realistic lipid environment, the proteins are embedded in a model plasma membrane, where more than 60 lipid species are represented, asymmetrically distributed between the leaflets. The simulations detail how each protein modulates its local lipid environment in a unique way, through enrichment or depletion of specific lipid components, resulting in thickness and curvature gradients. Our results provide a molecular glimpse of the complexity of lipid–protein interactions, with potentially far-reaching implications for our understanding of the overall organization of real cell membranes.
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spelling pubmed-60281532018-07-04 Lipid–Protein Interactions Are Unique Fingerprints for Membrane Proteins Corradi, Valentina Mendez-Villuendas, Eduardo Ingólfsson, Helgi I. Gu, Ruo-Xu Siuda, Iwona Melo, Manuel N. Moussatova, Anastassiia DeGagné, Lucien J. Sejdiu, Besian I. Singh, Gurpreet Wassenaar, Tsjerk A. Delgado Magnero, Karelia Marrink, Siewert J. Tieleman, D. Peter ACS Cent Sci [Image: see text] Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our current understanding of the detailed organization of cell membranes remains rather elusive, because of the challenge to study fluctuating nanoscale assemblies of lipids and proteins with the required spatiotemporal resolution. Here, we use molecular dynamics simulations to characterize the lipid environment of 10 different membrane proteins. To provide a realistic lipid environment, the proteins are embedded in a model plasma membrane, where more than 60 lipid species are represented, asymmetrically distributed between the leaflets. The simulations detail how each protein modulates its local lipid environment in a unique way, through enrichment or depletion of specific lipid components, resulting in thickness and curvature gradients. Our results provide a molecular glimpse of the complexity of lipid–protein interactions, with potentially far-reaching implications for our understanding of the overall organization of real cell membranes. American Chemical Society 2018-06-13 2018-06-27 /pmc/articles/PMC6028153/ /pubmed/29974066 http://dx.doi.org/10.1021/acscentsci.8b00143 Text en Copyright © 2018 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Corradi, Valentina
Mendez-Villuendas, Eduardo
Ingólfsson, Helgi I.
Gu, Ruo-Xu
Siuda, Iwona
Melo, Manuel N.
Moussatova, Anastassiia
DeGagné, Lucien J.
Sejdiu, Besian I.
Singh, Gurpreet
Wassenaar, Tsjerk A.
Delgado Magnero, Karelia
Marrink, Siewert J.
Tieleman, D. Peter
Lipid–Protein Interactions Are Unique Fingerprints for Membrane Proteins
title Lipid–Protein Interactions Are Unique Fingerprints for Membrane Proteins
title_full Lipid–Protein Interactions Are Unique Fingerprints for Membrane Proteins
title_fullStr Lipid–Protein Interactions Are Unique Fingerprints for Membrane Proteins
title_full_unstemmed Lipid–Protein Interactions Are Unique Fingerprints for Membrane Proteins
title_short Lipid–Protein Interactions Are Unique Fingerprints for Membrane Proteins
title_sort lipid–protein interactions are unique fingerprints for membrane proteins
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6028153/
https://www.ncbi.nlm.nih.gov/pubmed/29974066
http://dx.doi.org/10.1021/acscentsci.8b00143
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