Related Experiment Video
Updated: Oct 23, 2025

The Mechanics of Poro-Elastic Contractile Actomyosin Networks As a Model System of the Cell Cytoskeleton
Published on: March 10, 2023
Myosin II tension sensors visualize force generation within the actin cytoskeleton in living cells
Ryan G Hart1,2, Divya Kota3, Fangjia Li4
1Enabling Technologies Group, Sanford Research, Sioux Falls, SD 57104, USA.
Abstract:
Nonmuscle myosin II (NMII) generates cytoskeletal forces that drive 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 detect myosin-associated force along the filamentous actin network. Fluorescence lifetime imaging microscopy (FLIM)-FRET measurements indicate that the forces generated by NMII isoform B (NMIIB) exhibit significant spatial and temporal heterogeneity as a function of donor lifetime and fluorophore energy exchange. These measurements provide a proxy for inferred forces that vary widely along the actin cytoskeleton. 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.
More Related Videos
Related Concept Videos
Studying the Cytoskeleton
Overview of Myosin Structure and Function
Actin and Myosin in Muscle Contraction
The Role of Actin and Myosin in Non-muscle Cells
Role of Myosin in Cell Migration
Myosin II is a hexamer comprising two heavy chains with globular heads and coiled-coil tails, two regulatory light chains, and two essential light chains. The ATPase sites on the myosin heads hydrolyze ATP, and the released phosphate generates the force for contraction....
The Sarcomere
Each...

