Mechanism of homophilic adhesion by the neural cell adhesion molecule: Use of multiple domains and flexibility (original) (raw)

Neural Cell Adhesion Molecule (N-CAM) Homophilic Binding Mediated by the Two N-terminal Ig Domains Is Influenced by Intramolecular Domain-Domain Interactions

Bruce Cunningham, Geoffrey Owens, Warren Gallin

Journal of Biological Chemistry, 2004

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Elasticity and Rupture of a Multi-Domain Neural Cell Adhesion Molecule Complex

V. Maruthamuthu

Biophysical Journal, 2009

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Crystal Structure of the Ig1 Domain of the Neural Cell Adhesion Molecule NCAM2 Displays Domain Swapping

Nikolaj Rasmussen

Journal of Molecular Biology, 2008

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Structural characterization of a homophilic binding site in the neural cell adhesion molecule

C. H. SIU

Journal of Biological Chemistry, 1993

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Direct Evidence That Neural Cell Adhesion Molecule (NCAM) Polysialylation Increases Intermembrane Repulsion and Abrogates Adhesion

Colin Johnson

Journal of Biological Chemistry, 2004

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Identification of a peptide sequence involved in homophilic binding in the neural cell adhesion molecule NCAM

C. H. SIU

The Journal of cell …, 1992

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Backbone Dynamics of the First, Second, and Third Immunoglobulin Modules of the Neural Cell Adhesion Molecule (NCAM) †

Thorsten Thormann

Biochemistry, 2004

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Cell Adhesion Strength Is Controlled by Intermolecular Spacing of Adhesion Receptors

Horst Kessler

Biophysical Journal, 2010

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The Fibronectin Domains of the Neural Adhesion Molecule TAX-1 Are Necessary and Sufficient for Homophilic Binding

Panayoula Tsiotra

Journal of Biological Chemistry, 1996

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The structure of cell–matrix adhesions: the new frontier

Dorit Hanein

Current Opinion in Cell Biology, 2012

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Analysis of Cell-Cell Contact Mediated by Ig Superfamily Cell Adhesion Molecules

Daniel Suter, Esther Stoeckli

Current Protocols in Cell Biology, 2001

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Nanoscale localization of proteins within focal adhesions indicates discrete functional assemblies with selective force-dependence

Jerker Widengren

The FEBS journal, 2018

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Super-complexes of adhesion GPCRs and neural guidance receptors

Davide Comoletti

Nature communications, 2016

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Force-induced growth of adhesion domains is controlled by receptor mobility

Moyra Smith

Proceedings of the National Academy of Sciences, 2008

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A Molecular Tension Sensor for N-Cadherin Reveals Distinct Forms of Mechanosensitive Adhesion Assembly in Adherens and Synaptic Junctions

Ishaan Puranam

2019

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Protein Adhesion Force Dynamics and Single Adhesion Events

Geir Sagvolden

Biophysical Journal, 1999

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Localization of the L2 monoclonal antibody binding site on chicken neural cell adhesion molecule (NCAM) and evidence for its role in NCAM-mediated cell adhesion

Melitta Schachner

Neuroscience Letters, 1987

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Quantifying Forces Mediated by Integral Tight Junction Proteins in Cell–Cell Adhesion

Gunaretnam Rajagopal

Experimental Mechanics, 2009

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Spatial and Temporal Sequence of Events in Cell Adhesion: From Molecular Recognition to Focal Adhesion Assembly

Miriam Cohen

ChemBioChem, 2004

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Binding strength between cell adhesion proteoglycans measured by atomic force microscopy

Gradimir N Misevic, Octavian Popescu

Science, 1995

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Adhesion dynamics: Mechanisms and measurements

Maddy Parsons

The International Journal of Biochemistry & Cell Biology, 2008

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Direct evidence that NCAM polysialylation increases intermembrane repulsion and abrogates adhesion

Colin P Johnson

Journal of Biological Chemistry, 2004

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Monitoring in real-time focal adhesion protein dynamics in response to a discrete mechanical stimulus

Andrea Bragas

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Direct Measurements of Multiple Adhesive Alignments and Unbinding Trajectories between Cadherin Extracellular Domains

D. Leckband

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Surface Force Apparatus Measurements of Molecular Forces in Biological Adhesion

Deborah Leckband

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Intermediate filament-membrane attachments function synergistically with actin-dependent contacts to regulate intercellular adhesive strength

David Kelsell

The Journal of Cell Biology, 2002

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Techniques to stimulate and interrogate cell–cell adhesion mechanics

Horacio Espinosa

Extreme Mechanics Letters, 2018

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