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July 1, 1987The Journal of Cell Biology249 citationsOpen Access

Structural relationships of actin, myosin, and tropomyosin revealed by cryo-electron microscopy.

RMRonald A. MilliganPFPaula Flicker

Key Result

Cryo-electron microscopy revealed the actin monomer is ~65x40x40 A, and a small azimuthal shift of tropomyosin appears insufficient to totally eclipse the major actin-myosin interaction site.

Key Points

  • Determine the native three-dimensional structural relationships and binding interfaces among actin, myosin subfragment-1, and tropomyosin in frozen-hydrated filament assemblies.
  • Calculated three-dimensional density maps from cryo-electron micrographs of myosin subfragment-1 (S1)-decorated thin filaments and S1-decorated actin filaments preserved in frozen solution.
  • Averaged multiple datasets to generate reproducible structural maps and compared thin filament assemblies against actin-only assemblies.
  • Actin monomers (~65 × 40 × 40 Å) consist of two domains aligned perpendicular to the filament axis, with myosin S1 (~130 Å longest chord) binding tangentially to the outermost domain of a single actin.
  • Tropomyosin binds to the inner domain of actin at an approximate radius of 40 Å, situated immediately adjacent to the myosin binding interface.
  • The azimuthal displacement of tropomyosin proposed for calcium-mediated muscle regulation is insufficient to fully occlude the primary actin-myosin interaction site.

Structured PICO

P
Population
Myosin subfragment-1 (S1)-decorated thin filaments and S1-decorated actin filaments preserved in frozen solution
I
Intervention
Cryo-electron microscopy and three-dimensional map calculation
O
Outcome
Three-dimensional structural maps and relationships of actin, myosin, and tropomyosin

Provides a 3D structural model of actin-myosin-tropomyosin interactions, suggesting that the tropomyosin shift during Ca2+ regulation does not completely block the myosin binding site.

Abstract

We have calculated three-dimensional maps from images of myosin subfragment-1 (S1)-decorated thin filaments and S1-decorated actin filaments preserved in frozen solution. By averaging many data sets we obtained highly reproducible maps that can be interpreted simply to provide a model for the native structure of decorated filaments. From our results we have made the following conclusions. The bulk of the actin monomer is approximately 65 X 40 X 40 A and is composed of two domains. In the filaments the monomers are strongly connected along the genetic helix with weaker connections following the long pitch helix. The long axis of the monomer lies roughly perpendicular to the filament axis. The myosin head (S1) approaches the actin filament tangentially and binds to a single actin, the major interaction being with the outermost domain of actin. In the map the longest chord of S1 is approximately 130 A. The region of S1 closest to actin is of high density, whereas the part furthest away is poorly defined and may be disordered. By comparing maps from decorated thin filaments with those from decorated actin, we demonstrate that tropomyosin is bound to the inner domain of actin just in front of the myosin binding site at a radius of approximately 40 A. A small change in the azimuthal position of tropomyosin, as has been suggested by others to occur during Ca2+-mediated regulation in vertebrate striated muscle, appears to be insufficient to eclipse totally the major site of interaction between actin and myosin.

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Cite This Study

Milligan et al. (1987) studied this question. Cryo-electron microscopy revealed the actin monomer is ~65x40x40 A, and a small azimuthal shift of tropomyosin appears insufficient to totally eclipse the major actin-myosin interaction site.

synapsesocial.com/papers/6a13ca003f9a9dbf1d39e3c6https://doi.org/10.1083/jcb.105.1.29
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Muscle thin-filament structure and regulation. Actin sub-domain movements and the tropomyosin shift modelled from low-angle X-ray diffraction1993 · 20 citations
  2. 2Tropomyosin Positions in Regulated Thin Filaments Revealed by Cryoelectron Microscopy1999 · 174 citations
  3. 3Three-Dimensional Image Analysis of the Complex of Thin Filaments and Myosin Molecules from Skeletal Muscle. IV.1 Reconstitution from Minimal- and High-Dose Images of the Actin-Tropomyosin-Myosin Subfragment-1 Complex21985 · 53 citations
  4. 4Relaxed and active thin filament structures; a new structural basis for the regulatory mechanism2017 · 25 citations
  5. 5Structure of the mid-region of tropomyosin: Bending and binding sites for actin2005 · 157 citations