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Complementary studies of lipid membrane dynamics using iSCAT and super-resolved fluorescence correlation spectroscopy

Observation techniques with high spatial and temporal resolution, such as single-particle tracking based on interferometric scattering (iSCAT) microscopy, and fluorescence correlation spectroscopy applied on a super-resolution STED microscope (STED-FCS), have revealed new insights of the molecular o...

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Autores principales: Reina, Francesco, Galiani, Silvia, Shrestha, Dilip, Sezgin, Erdinc, de Wit, Gabrielle, Cole, Daniel, Christoffer Lagerholm, B, Kukura, Philipp, Eggeling, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: IOP Publishing 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5964363/
https://www.ncbi.nlm.nih.gov/pubmed/29853718
http://dx.doi.org/10.1088/1361-6463/aac04f
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author Reina, Francesco
Galiani, Silvia
Shrestha, Dilip
Sezgin, Erdinc
de Wit, Gabrielle
Cole, Daniel
Christoffer Lagerholm, B
Kukura, Philipp
Eggeling, Christian
author_facet Reina, Francesco
Galiani, Silvia
Shrestha, Dilip
Sezgin, Erdinc
de Wit, Gabrielle
Cole, Daniel
Christoffer Lagerholm, B
Kukura, Philipp
Eggeling, Christian
author_sort Reina, Francesco
collection PubMed
description Observation techniques with high spatial and temporal resolution, such as single-particle tracking based on interferometric scattering (iSCAT) microscopy, and fluorescence correlation spectroscopy applied on a super-resolution STED microscope (STED-FCS), have revealed new insights of the molecular organization of membranes. While delivering complementary information, there are still distinct differences between these techniques, most prominently the use of fluorescent dye tagged probes for STED-FCS and a need for larger scattering gold nanoparticle tags for iSCAT. In this work, we have used lipid analogues tagged with a hybrid fluorescent tag–gold nanoparticle construct, to directly compare the results from STED-FCS and iSCAT measurements of phospholipid diffusion on a homogeneous supported lipid bilayer (SLB). These comparative measurements showed that while the mode of diffusion remained free, at least at the spatial (>40 nm) and temporal (50  ⩽  t  ⩽  100 ms) scales probed, the diffussion coefficient was reduced by 20- to 60-fold when tagging with 20 and 40 nm large gold particles as compared to when using dye tagged lipid analogues. These FCS measurements of hybrid fluorescent tag–gold nanoparticle labeled lipids also revealed that commercially supplied streptavidin-coated gold nanoparticles contain large quantities of free streptavidin. Finally, the values of apparent diffusion coefficients obtained by STED-FCS and iSCAT differed by a factor of 2–3 across the techniques, while relative differences in mobility between different species of lipid analogues considered were identical in both approaches. In conclusion, our experiments reveal that large and potentially cross-linking scattering tags introduce a significant slow-down in diffusion on SLBs but no additional bias, and our labeling approach creates a new way of exploiting complementary information from STED-FCS and iSCAT measurements.
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spelling pubmed-59643632018-05-29 Complementary studies of lipid membrane dynamics using iSCAT and super-resolved fluorescence correlation spectroscopy Reina, Francesco Galiani, Silvia Shrestha, Dilip Sezgin, Erdinc de Wit, Gabrielle Cole, Daniel Christoffer Lagerholm, B Kukura, Philipp Eggeling, Christian J Phys D Appl Phys Paper Observation techniques with high spatial and temporal resolution, such as single-particle tracking based on interferometric scattering (iSCAT) microscopy, and fluorescence correlation spectroscopy applied on a super-resolution STED microscope (STED-FCS), have revealed new insights of the molecular organization of membranes. While delivering complementary information, there are still distinct differences between these techniques, most prominently the use of fluorescent dye tagged probes for STED-FCS and a need for larger scattering gold nanoparticle tags for iSCAT. In this work, we have used lipid analogues tagged with a hybrid fluorescent tag–gold nanoparticle construct, to directly compare the results from STED-FCS and iSCAT measurements of phospholipid diffusion on a homogeneous supported lipid bilayer (SLB). These comparative measurements showed that while the mode of diffusion remained free, at least at the spatial (>40 nm) and temporal (50  ⩽  t  ⩽  100 ms) scales probed, the diffussion coefficient was reduced by 20- to 60-fold when tagging with 20 and 40 nm large gold particles as compared to when using dye tagged lipid analogues. These FCS measurements of hybrid fluorescent tag–gold nanoparticle labeled lipids also revealed that commercially supplied streptavidin-coated gold nanoparticles contain large quantities of free streptavidin. Finally, the values of apparent diffusion coefficients obtained by STED-FCS and iSCAT differed by a factor of 2–3 across the techniques, while relative differences in mobility between different species of lipid analogues considered were identical in both approaches. In conclusion, our experiments reveal that large and potentially cross-linking scattering tags introduce a significant slow-down in diffusion on SLBs but no additional bias, and our labeling approach creates a new way of exploiting complementary information from STED-FCS and iSCAT measurements. IOP Publishing 2018-06-13 2018-05-16 /pmc/articles/PMC5964363/ /pubmed/29853718 http://dx.doi.org/10.1088/1361-6463/aac04f Text en © 2018 IOP Publishing Ltd http://creativecommons.org/licenses/by/3.0/ Original content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence (http://creativecommons.org/licenses/by/3.0) . Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.
spellingShingle Paper
Reina, Francesco
Galiani, Silvia
Shrestha, Dilip
Sezgin, Erdinc
de Wit, Gabrielle
Cole, Daniel
Christoffer Lagerholm, B
Kukura, Philipp
Eggeling, Christian
Complementary studies of lipid membrane dynamics using iSCAT and super-resolved fluorescence correlation spectroscopy
title Complementary studies of lipid membrane dynamics using iSCAT and super-resolved fluorescence correlation spectroscopy
title_full Complementary studies of lipid membrane dynamics using iSCAT and super-resolved fluorescence correlation spectroscopy
title_fullStr Complementary studies of lipid membrane dynamics using iSCAT and super-resolved fluorescence correlation spectroscopy
title_full_unstemmed Complementary studies of lipid membrane dynamics using iSCAT and super-resolved fluorescence correlation spectroscopy
title_short Complementary studies of lipid membrane dynamics using iSCAT and super-resolved fluorescence correlation spectroscopy
title_sort complementary studies of lipid membrane dynamics using iscat and super-resolved fluorescence correlation spectroscopy
topic Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5964363/
https://www.ncbi.nlm.nih.gov/pubmed/29853718
http://dx.doi.org/10.1088/1361-6463/aac04f
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