Related Experiment Video
Updated: Jan 18, 2026

Tension Gauge Tether Probes for Quantifying Growth Factor Mediated Integrin Mechanics and Adhesion
Published on: February 11, 2022
Multivalent DNA Origami Enables Single-Molecule Dissection of Integrin αvβ6-Receptor Tyrosine Kinase Crosstalk in
Tingting Zheng1, Lauren Grace Rigby2, John F Marshall2
1Department of Chemistry, Queen Mary University of London, Mile End Road, London E1 4NS, United Kingdom.
None:
Nanoscale organization of integrin-mediated receptor crosstalk is crucial for controlling cellular signaling in cancer biology. Previously, interactions between integrin αvβ6 and receptor tyrosine kinases (RTKs) have been implicated in cancer progression, but the spatial regulatory mechanisms remain undefined. Here, we developed a programmable DNA origami-based platform for nanoscale control of heteroligand multivalency and spacing, enabling systematic investigation of αvβ6-RTK interactions in cancer biology. We identified a spatial activation threshold for the αvβ6-specific peptide A20FMDV2 that promotes A375P β6 cell adhesion and FAK phosphorylation along with spacing- and density-dependent EGFR phosphorylation triggered by EGFR aptamers. Importantly, at an optimized peptide-to-RTK (EGFR, HER2, and Met) aptamer ratio and ligand density, αvβ6-RTK coactivation synergistically enhanced cell spreading and amplified phosphorylation of AKT and ERK, part of the PI3K-AKT and Ras-MAPK pathways. Validation in breast cancer models (MDA-MB-468 and BT-474) highlighted cell-type-specific signaling dependencies. This platform offers a framework for tumor microenvironment mimics and integrin-RTK-targeted therapies, emphasizing the critical role of nanoscale ligand patterning and multivalency in cancer progression.
Related Concept Videos
Intracellular Signaling Affects Focal Adhesions
Some...
Integrins
Some ECM proteins assemble into a basement membrane to which the remaining components adhere. Proteoglycans typically form the bulk of the ECM while fibrous proteins, like collagen,...
Activation of Integrins
In "outside-in signaling," external factors in the extracellular space bind to exposed ligand binding sites on integrins. This causes the inactive protein to undergo a conformational change to become active. Integrins are often clustered on the cell membrane. Repetitive and regularly spaced ligand binding...
Overview of Cell-Matrix Interactions

