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PMID: 306434 Published · ppublish English Journal Article

Filament sliding and energy absorbed by the cross-bridge in active muscle subjected to cycical length changes.

The Journal of physiology ·Vol. 276 ·1978-03-00 ·Pages 467-79

Flitney FW, Hirst DG

Abstract

1. The effects of single and double cycles of stretch and release on the tension response and relative sliding movement of the actin and myosin filaments in active frog's muscle were investigated. 2. The cross-bridges linking the filaments together are able to accommodate a greater range of filament displacement before becoming detached during a second cycle stretch, providing it commences without delay following the preceding release: sarcomere 'give' then occurs for displacements of around 18 nm, as compared with 12 nm for a first cycle stretch. It is postulated that the difference arises because the myosin heads adopt different 'preferred' positions in the isometric steady-state and at the end of a previous release. 3. Muscle length-tension loops were recorded and used to measure the energy absorbed when a muscle is subjected to cycles of stretch and release. The work absorbed per unit length change increases with increasing displacement of the cross-bridges from their initial (isometric) steady-state position, up to the point at which sarcomere 'give' occurs (S2); thereafter it remains constant. 4. More work is absorbed during the first cycle of a double stretch-release combination than during the second. The greater amount absorbed during the first cycle is associated with a correspondingly greater amount of filament sliding in the period following sarcomere 'give'. Sarcomere length-tension loops were constructed and these showed that not less than 80-85% of the work done on a muscle is absorbed by the sarcomeres themselves. 5. A greater amount of work is done on stretching up to (but not beyond) S2 during second cycle stretch as compared to a first. The difference amounts about 1 mJ.m-2 per half-sarcomere. 6. The results are compatible with the mechanism for force production proposed by Huxley & Simmons (1973), in which each myosin head generates force in a number of stepping movements, from one attached state to another. It is concluded that (a) during an unloaded isotonic contraction the working 'stroke' of the head would result in a 10-13 nm relative sliding movement of the filaments, and (b) the potential energy difference separating the two 'preferred' states is 6-9.6 kT per cross-bridge, or 3-4.8 kT per S-1 sub-units, assuming that each one interacts simultaneously with the actin filament.

MeSH Terms
Actins/physiology Animals Anura Biomechanical Phenomena In Vitro Techniques Muscle Contraction Myofibrils/physiology Myosins/physiology Rana temporaria
Chemicals
Actins Myosins
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Flitney F W
Hirst D G
References (9)
9 references, click to expand
  1. Cross-bridge detachment and sarcomere 'give' during stretch of active frog's muscle.
    J Physiol. 1978 Mar;276:449-65 PMID: 306433
  2. The instantaneous elasticity of frog skeletal muscle fibres [proceedings].
    J Physiol. 1976 Sep;260(2):28P-29P PMID: 978520
  3. Mechanical properties of the cross-bridges of frog striated muscle.
    J Physiol. 1971 Oct;218 Suppl:59P-60P PMID: 5130636
  4. Muscular contraction.
    J Physiol. 1974 Nov;243(1):1-43 PMID: 4449057
  5. Heat work and phosphorylcreatine break-down in muscle.
    J Physiol. 1968 Mar;195(1):157-83 PMID: 5639798
  6. The activation of striated muscle and its mechanical response.
    Proc R Soc Lond B Biol Sci. 1971 Jun 15;178(1050):1-27 PMID: 4397265
  7. X-ray evidence for radial cross-bridge movement and for the sliding filament model in actively contracting skeletal muscle.
    J Mol Biol. 1973 Jul 15;77(4):549-68 PMID: 4541885
  8. Recent x-ray diffraction studies of muscle.
    Q Rev Biophys. 1968 Jun;1(2):177-216 PMID: 4884850
  9. Use of an X-ray television for diffraction of the frog striated muscle.
    Nature. 1975 Jun 26;255(5511):728-9 PMID: 1079574
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1978-03-00
Pages
467-79
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1282438
Subset
IM
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