Ca2+-induced tropomyosin movement in Limulus thin filaments revealed by three-dimensional reconstruction
- 1 March 1994
- journal article
- Published by Springer Nature in Nature
- Vol. 368 (6466), 65-67
- https://doi.org/10.1038/368065a0
Abstract
The steric model of muscle regulation holds that tropomyosin strands running along thin filaments move away from myosin-binding sites on actin when muscle is activated. Exposing these sites would permit actomyosin interaction and contraction to proceed. This compelling and widely cited model is based on changes observed in X-ray diffraction patterns of skeletal muscle following activation. Although analysis of X-ray patterns can suggest models of filament structure, unambiguous interpretation is not possible. In contrast, three-dimensional reconstruction of thin-filament electron micrographs could, in principle, offer direct confirmation of the predicted tropomyosin movement, but so far tropomyosin in skeletal muscle has been resolved definitively only in the 'on' state but not in the 'off' state. Thin filaments from the arthropod Limulus have a similar composition to those from vertebrate skeletal muscle, and troponin-tropomyosin is distributed in both species with the same characteristic 38-nm periodicity. Limulus thin filaments activate skeletal muscle myosin ATPase at micromolar Ca2+ concentrations and confer a high calcium dependence on the enzyme. Arthropod and vertebrate troponin subunits form functional hybrids in vitro and the respective tropomyosins are functionally interchangeable, arguing for a common mechanism of thin-filament-linked regulation in the two phyla. Here we report that tropomyosin is readily resolved in native filaments of troponin-regulated Limulus muscle in both the 'on' and 'off' states, and demonstrate tropomyosin movement, providing support for the importance of steric effects in muscle activation.Keywords
This publication has 23 references indexed in Scilit:
- Three-dimensional reconstruction of caldesmon-containing smooth muscle thin filaments.The Journal of cell biology, 1993
- Molecular structure of F-actin and location of surface binding sitesNature, 1990
- Troponin of asynchronous flight muscleJournal of Molecular Biology, 1988
- The location and periodicity of a troponin-T-like protein in the myofibril of the horseshoe crab Limulus polyphemusJournal of Molecular Biology, 1982
- The stoichiometry of the components of arthropod thin filamentsBiochimica et Biophysica Acta (BBA) - Protein Structure, 1976
- Hybrid troponin reconstituted from vertebrate and arthropod subunitsNature, 1975
- Regulatory proteins of lobster striated muscleBiochemistry, 1975
- Structural role of tropomyosin in muscle regulation: Analysis of the X-ray diffraction patterns from relaxed and contracting musclesJournal of Molecular Biology, 1973
- Structural Changes in the Actin- and Myosin-eontaining Filaments during ContractionCold Spring Harbor Symposia on Quantitative Biology, 1973
- Activation of the Adenosine Triphosphatase of Limulus polyphemus Actomyosin by TropomyosinThe Journal of general physiology, 1972