Large and reversible myosin-dependent forces in rigidity sensing
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy
Link
http://www.nature.com/articles/s41567-019-0477-9.pdf
Reference48 articles.
1. Moore, S. W., Roca-Cusachs, P. & Sheetz, M. P. Stretchy proteins on stretchy substrates: the important elements of integrin-mediated rigidity sensing. Dev. Cell 19, 194–206 (2010).
2. Wolfenson, H., Iskratsch, T. & Sheetz, M. P. Early events in cell spreading as a model for quantitative analysis of biomechanical events. Biophys. J. 107, 2508–2514 (2014).
3. Plotnikov, S. V., Pasapera, A. M., Sabass, B. & Waterman, C. M. Force fluctuations within focal adhesions mediate ECM-rigidity sensing to guide directed cell migration. Cell 151, 1513–1527 (2012).
4. Schiller, H. B. et al. β1- and αv-class integrins cooperate to regulate myosin II during rigidity sensing of fibronectin-based microenvironments. Nat. Cell Biol. 15, 625–636 (2013).
5. Paszek, M. J. et al. Tensional homeostasis and the malignant phenotype. Cancer Cell 8, 241–254 (2005).
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