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Dynamics in the plasma membrane: how to combine fluidity and order

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TLDR
The basic concepts of Brownian diffusion and lipid domain formation in model membranes are summarized and the development of ideas and tools in this field are tracked, outlining key results obtained on the dynamic processes at work in membrane structure and assembly.
Abstract
Cell membranes are fascinating supramolecular aggregates that not only form a barrier between compartments but also harbor many chemical reactions essential to the existence and functioning of a cell. Here, it is proposed to review the molecular dynamics and mosaic organization of the plasma membrane, which are thought to have important functional implications. We will first summarize the basic concepts of Brownian diffusion and lipid domain formation in model membranes and then track the development of ideas and tools in this field, outlining key results obtained on the dynamic processes at work in membrane structure and assembly. We will focus in particular on findings made using fluorescent labeling and imaging procedures to record these dynamic processes. We will also discuss a few examples showing the impact of lateral diffusion on cell signal transduction, and outline some future methodological challenges which must be met before we can answer some of the questions arising in this field of research.

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Journal ArticleDOI

Mechanistic Studies of the Triggered Release of Liposomal Contents by Matrix Metalloproteinase-9

TL;DR: The results of mechanistic studies of the MMP-9-triggered release of liposomal contents are reported, indicating that the observed differences in the release reflect the ability of theliposomal membrane to anneal the defects following the enzymatic cleavage of the liposome-incorporated lipopeptides.
Journal ArticleDOI

Have we become overly reliant on lipid rafts? Talking Point on the involvement of lipid rafts in T-cell activation.

TL;DR: This issue is explored in the context of two of the major tenets of the lipid‐raft model: protein–protein interactions during signalling in a cholesterol‐dependent manner and the role of membrane domains in controlling cellular functions.
Journal ArticleDOI

Cholesterol Depletion Mimics the Effect of Cytoskeletal Destabilization on Membrane Dynamics of the Serotonin1A Receptor: A zFCS Study

TL;DR: These results constitute the first report on G-protein-coupled receptor dynamics utilizing a combination of zFCS and the FCS diffusion laws, and present a convenient approach to explore cell membrane heterogeneity at the submicron level.
Journal ArticleDOI

In Vivo Composition of NMDA Receptor Signaling Complexes Differs between Membrane Subdomains and Is Modulated by PSD-95 And PSD-93

TL;DR: Critical roles for scaffold proteins and their interactions with NMDA receptor subunits in organizing the differential expression in rafts and postsynaptic densities of synaptic signaling complexes are shown.
Journal ArticleDOI

Fluorescent Lipids: Functional Parts of Fusogenic Liposomes and Tools for Cell Membrane Labeling and Visualization

TL;DR: All probed lipids could more efficiently be incorporated into the plasma membrane of living cells than by using other methods and labeling occurred in a gentle manner under classical cell culture conditions reducing cellular stress responses.
References
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Quantum dot bioconjugates for imaging, labelling and sensing

TL;DR: This review looks at current methods for preparing QD bioconjugates as well as presenting an overview of applications, and concludes that the potential of QDs in biology has just begun to be realized and new avenues will arise as the ability to manipulate these materials improves.
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TL;DR: This book is a lucid, straightforward introduction to the concepts and techniques of statistical physics that students of biology, biochemistry, and biophysics must know.
Journal ArticleDOI

A guide to choosing fluorescent proteins.

TL;DR: A unified characterization of the best available FPs provides a useful guide in narrowing down the options for biological imaging tools.
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