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research article

Elastic membrane heterogeneity of living cells revealed by stiff nanoscale membrane domains

Roduit, Charles  
•
van der Goot, F Gisou  
•
De Los Rios, Paolo  
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2008
Biophysical Journal

Many approaches have been developed to characterize the heterogeneity of membranes in living cells. In this study, the elastic properties of specific membrane domains in living cells are characterized by atomic force microscopy. Our data reveal the existence of heterogeneous nanometric scale domains with specific biophysical properties. We focused on glycosylphosphatidylinositol (GPI)-anchored proteins, which play an important role in membrane trafficking and cell signaling under both physiological and pathological conditions and which are known to partition preferentially into cholesterol-rich microdomains. We demonstrate that these GPI-anchored proteins reside within domains that are stiffer than the surrounding membrane. In contrast, membrane domains containing the transferrin receptor, which does not associate with cholesterol-rich regions, manifest no such feature. The heightened stiffness of GPI domains is consistent with existing data relating to the specific condensation of lipids and the slow diffusion rates of lipids and proteins therein. Our quantitative data may forge the way to unveiling the links that exist between membrane stiffness, molecular diffusion, and signaling activation.

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Type
research article
DOI
10.1529/biophysj.107.112862
Web of Science ID

WOS:000252597700038

Author(s)
Roduit, Charles  
van der Goot, F Gisou  
De Los Rios, Paolo  
Yersin, Alexandre  
Steiner, Pascal  
Dietler, Giovanni  
Catsicas, Stefan  
Lafont, Frank
Kasas, Sandor  
Date Issued

2008

Publisher

Elsevier

Published in
Biophysical Journal
Volume

94

Start page

1521

End page

1532

Subjects

Atomic-Force Microscope

•

Gpi-Anchored Proteins

•

Single-Molecule Microscopy

•

Lipid Rafts

•

Plasma-Membrane

•

Hippocampal-Neurons

•

Cholesterol Depletion

•

Prion Protein

•

Receptor

•

Microdomains

•

Models, Neurological

Editorial or Peer reviewed

REVIEWED

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Available on Infoscience
March 16, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/48192
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