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Mechanotransduction at cadherin-mediated adhesions
Deborah E. Leckband
, Quint le Duc
,
Ning Wang
, Johan de Rooij
Chemical and Biomolecular Engineering
Chemistry
School of Chemical Sciences
Beckman Institute for Advanced Science and Technology
Carl R. Woese Institute for Genomic Biology
Micro and Nanotechnology Lab
Bioengineering
Mechanical Science and Engineering
Biomedical and Translational Sciences
Research output
:
Contribution to journal
›
Review article
›
peer-review
Overview
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Keyphrases
Architectural Proteins
50%
Cadherin
50%
Cell Adhesion
50%
Cell Function
100%
Cell-cell Junctions
50%
Cell-extracellular Matrix Adhesion
50%
Cell-to-cell Junctions
50%
Classical Cadherins
50%
E-cadherin Adhesion
100%
Extracellular Matrix Adhesion
50%
Force Sensing
50%
Force Sensor
50%
Matrix Mechanics
50%
Mechanosensing
50%
Mechanosensor
50%
Mechanotransduction
100%
Protein Complex
50%
Signal Transduction Pathway
50%
Signaling Hub
50%
Soft Tissue
50%
Surrounding Environment
50%
Biochemistry, Genetics and Molecular Biology
Cadherin
100%
Cell Adhesion
33%
Cell Function
66%
Cell Junction
66%
Mechanotransduction
100%
Protein Complexes
33%