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Forces measured with micro-fabricated cantilevers during actomyosin interactions produced by filaments containing different myosin isoforms and loop 1 structures
Authors:Albert Kalganov  Nabil Shalabi  Nedjma Zitouni  Linda Hussein Kachmar  Anne-Marie Lauzon  Dilson E. Rassier
Affiliation:1. Department of Kinesiology and Physical Education, Faculty of Education, McGill University, Canada;2. Department of Mechanical Engineering, Faculty of Engineering McGill University, Canada;3. Meakins-Christie Laboratories, McGill University, Canada;4. Department of Experimental Medicine, Faculty of Medicine McGill University, Canada;5. Departments of Physics, Faculty of Science, McGill University, Canada;6. Department of Physiology, Faculty of Medicine, McGill University, Canada
Abstract:

Background

There is evidence that the actin-activated ATP kinetics and the mechanical work produced by muscle myosin molecules are regulated by two surface loops, located near the ATP binding pocket (loop 1), and in a region that interfaces with actin (loop 2). These loops regulate force and velocity of contraction, and have been investigated mostly in single molecules. There is a lack of information of the work produced by myosin molecules ordered in filaments and working cooperatively, which is the actual muscle environment.

Methods

We use micro-fabricated cantilevers to measure forces produced by myosin filaments isolated from mollusk muscles, skeletal muscles, and smooth muscles containing variations in the structure of loop 1 (tonic and phasic myosins). We complemented the experiments with in-vitro assays to measure the velocity of actin motility.

Results

Smooth muscle myosin filaments produced more force than skeletal and mollusk myosin filaments when normalized per filament overlap. Skeletal muscle myosin propelled actin filaments in a higher sliding velocity than smooth muscle myosin. The values for force and velocity were consistent with previous studies using myosin molecules, and suggest a close correlation with the myosin isoform and structure of surface loop 1.

General significance

The technique using micro-fabricated cantilevers to measure force of filaments allows for the investigation of the relation between myosin structure and contractility, allowing experiments to be conducted with an array of different myosin isoforms. Using the technique we observed that the work produced by myosin molecules is regulated by amino-acid sequences aligned in specific loops.
Keywords:Actin filament   Myosin filament   Force   Cantilevers   Muscle contraction   Loop 1
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