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Atomic force microscopy - looking at mechanosensors on the cell surface.


ABSTRACT: Living cells use cell surface proteins, such as mechanosensors, to constantly sense and respond to their environment. However, the way in which these proteins respond to mechanical stimuli and assemble into large complexes remains poorly understood at the molecular level. In the past years, atomic force microscopy (AFM) has revolutionized the way in which biologists analyze cell surface proteins to molecular resolution. In this Commentary, we discuss how the powerful set of advanced AFM techniques (e.g. live-cell imaging and single-molecule manipulation) can be integrated with the modern tools of molecular genetics (i.e. protein design) to study the localization and molecular elasticity of individual mechanosensors on the surface of living cells. Although we emphasize recent studies on cell surface proteins from yeasts, the techniques described are applicable to surface proteins from virtually all organisms, from bacteria to human cells.

SUBMITTER: Heinisch JJ 

PROVIDER: S-EPMC3516434 | biostudies-literature | 2012 Sep

REPOSITORIES: biostudies-literature

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Atomic force microscopy - looking at mechanosensors on the cell surface.

Heinisch Jürgen J JJ   Lipke Peter N PN   Beaussart Audrey A   El Kirat Chatel Sofiane S   Dupres Vincent V   Alsteens David D   Dufrêne Yves F YF  

Journal of cell science 20120901 Pt 18


Living cells use cell surface proteins, such as mechanosensors, to constantly sense and respond to their environment. However, the way in which these proteins respond to mechanical stimuli and assemble into large complexes remains poorly understood at the molecular level. In the past years, atomic force microscopy (AFM) has revolutionized the way in which biologists analyze cell surface proteins to molecular resolution. In this Commentary, we discuss how the powerful set of advanced AFM techniqu  ...[more]

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