Literature DB >> 17911652

Studying integrin-mediated cell adhesion at the single-molecule level using AFM force spectroscopy.

Clemens M Franz1, Anna Taubenberger, Pierre-Henri Puech, Daniel J Muller.   

Abstract

The establishment of cell adhesion involves specific recognition events between individual cell-surface receptors and molecules of the cellular environment. However, characterizing single-molecule adhesion events in the context of a living cell presents an experimental challenge. The atomic force microscope (AFM) operated in force spectroscopy mode provides an ultrasensitive method to investigate cell adhesion forces at the level of single receptor-ligand bonds. With a living cell attached to the AFM cantilever, the number of cell-substrate interactions can be controlled and limited to the formation of single receptor-ligand bonds. From force-distance (F-D) curves recorded during cell detachment, the strength of single receptor-ligand bonds can be determined. Furthermore, by varying the rate of force application during bond rupture, a dynamic force spectrum (DFS) can be generated from which additional parameters that describe the energy landscape of the interaction, such as dissociation rate and energy barrier width, can be obtained. Using the example of alpha(2)beta(1) integrin-mediated adhesion to type I collagen, we provide a detailed description of how dynamic AFM single-cell force spectroscopy (SCFS) adhesion measurements can be performed with single-molecule sensitivity, and how specific energy landscape parameters of the integrin-collagen bond can be extracted from the DFS.

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Year:  2007        PMID: 17911652     DOI: 10.1126/stke.4062007pl5

Source DB:  PubMed          Journal:  Sci STKE        ISSN: 1525-8882


  23 in total

1.  Characterizing rare-event property distributions via replicate molecular dynamics simulations of proteins.

Authors:  Ranjani Krishnan; Emily B Walton; Krystyn J Van Vliet
Journal:  J Mol Model       Date:  2009-05-06       Impact factor: 1.810

2.  Cooperativity in adhesion cluster formation during initial cell adhesion.

Authors:  Christine Selhuber-Unkel; Mónica López-García; Horst Kessler; Joachim P Spatz
Journal:  Biophys J       Date:  2008-08-08       Impact factor: 4.033

3.  Membrane-based actuation for high-speed single molecule force spectroscopy studies using AFM.

Authors:  Krishna Sarangapani; Hamdi Torun; Ofer Finkler; Cheng Zhu; Levent Degertekin
Journal:  Eur Biophys J       Date:  2010-01-07       Impact factor: 1.733

4.  Unraveling the Receptor-Ligand Interactions between Bladder Cancer Cells and the Endothelium Using AFM.

Authors:  Vinoth Sundar Rajan; Valérie M Laurent; Claude Verdier; Alain Duperray
Journal:  Biophys J       Date:  2017-03-28       Impact factor: 4.033

Review 5.  Force probing of individual molecules inside the living cell is now a reality.

Authors:  Lene B Oddershede
Journal:  Nat Chem Biol       Date:  2012-11       Impact factor: 15.040

6.  Nanoscale mechanics guides cellular decision making.

Authors:  Zainab Rahil; Sara Pedron; Xuefeng Wang; TaekJip Ha; Brendan Harley; Deborah Leckband
Journal:  Integr Biol (Camb)       Date:  2016-08-01       Impact factor: 2.192

7.  Toxic HypF-N Oligomers Selectively Bind the Plasma Membrane to Impair Cell Adhesion Capability.

Authors:  Reinier Oropesa-Nuñez; Sandeep Keshavan; Silvia Dante; Alberto Diaspro; Benedetta Mannini; Claudia Capitini; Cristina Cecchi; Massimo Stefani; Fabrizio Chiti; Claudio Canale
Journal:  Biophys J       Date:  2018-03-27       Impact factor: 4.033

8.  Integrin adhesion and force coupling are independently regulated by localized PtdIns(4,5)2 synthesis.

Authors:  Kyle R Legate; Seiichiro Takahashi; Navid Bonakdar; Ben Fabry; David Boettiger; Roy Zent; Reinhard Fässler
Journal:  EMBO J       Date:  2011-11-16       Impact factor: 11.598

9.  Cytoadherence of erythrocytes invaded by Plasmodium falciparum: quantitative contact-probing of a human malaria receptor.

Authors:  P A Carvalho; M Diez-Silva; H Chen; M Dao; S Suresh
Journal:  Acta Biomater       Date:  2013-01-29       Impact factor: 8.947

Review 10.  Systems Analysis of Thrombus Formation.

Authors:  Scott L Diamond
Journal:  Circ Res       Date:  2016-04-29       Impact factor: 17.367

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