| Literature DB >> 34301871 |
Ramesh Koirala1,2, Andrew Vae Priest1,2, Chi-Fu Yen2, Joleen S Cheah1, Willem-Jan Pannekoek3, Martijn Gloerich3, Soichiro Yamada1, Sanjeevi Sivasankar4.
Abstract
Cadherin cell-cell adhesion proteins play key roles in tissue morphogenesis and wound healing. Cadherin ectodomains bind in two conformations, X-dimers and strand-swap dimers, with different adhesive properties. However, the mechanisms by which cells regulate ectodomain conformation are unknown. Cadherin intracellular regions associate with several actin-binding proteins including vinculin, which are believed to tune cell-cell adhesion by remodeling the actin cytoskeleton. Here, we show at the single-molecule level, that vinculin association with the cadherin cytoplasmic region allosterically converts weak X-dimers into strong strand-swap dimers and that this process is mediated by myosin II-dependent changes in cytoskeletal tension. We also show that in epithelial cells, ∼70% of apical cadherins exist as strand-swap dimers while the remaining form X-dimers, providing two cadherin pools with different adhesive properties. Our results demonstrate the inside-out regulation of cadherin conformation and establish a mechanistic role for vinculin in this process.Entities:
Keywords: E-cadherin; conformation; ectodomain; inside-out regulation; vinculin
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Year: 2021 PMID: 34301871 PMCID: PMC8325368 DOI: 10.1073/pnas.2104090118
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205