Author:
Hart Ryan G.,Kota Divya,Li Fangjia,Ramallo Diego,Price Andrew J.,Otterpohl Karla L.,Smith Steve J.,Dunn Alexander R.,Liu Jing,Chandrasekar Indra
Abstract
AbstractType II myosin motors generate cytoskeletal forces that are central to cell division, embryogenesis, muscle contraction, and many other cellular functions. However, at present there is no method that can directly measure the forces generated by myosins in living cells. Here we describe a Förster resonance energy transfer (FRET)-based tension sensor that can measure forces generated by Nonmuscle Myosin IIB (NMIIB) in living cells with piconewton (pN) sensitivity. Fluorescence lifetime imaging microscopy (FLIM)-FRET measurements indicate that the forces generated by NMIIB exhibit significant spatial and temporal heterogeneity, with inferred tensions that vary widely in different regions of the cell. This initial report highlights the potential utility of myosin-based tension sensors in elucidating the roles of cytoskeletal contractility in a wide variety of contexts.
Publisher
Cold Spring Harbor Laboratory
Cited by
2 articles.
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