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December 1, 1982Proceedings of the National Academy of Sciences300 citationsOpen Access

Evidence for cross-bridge attachment in relaxed muscle at low ionic strength.

BBBernhard BrennerMSM. SchoenbergJCJoseph M. Chalovich

Key Result

Low ionic strength resulted in high rapid stiffness of resting muscle proportional to actin-myosin overlap, suggesting cross-bridges are attached to actin in relaxed muscle.

Key Points

  • This study investigates the attachment of cross-bridges in relaxed muscle fibers under low ionic strength and identifies key factors influencing stiffness.
  • In vitro experiments at low ionic strength (mu = 0.02 M) and 5 degrees C using myosin subfragment-1 and regulated actin
  • Force development observed in skinned rabbit psoas muscle fibers with varying Ca2+ conditions
  • Rapid stiffness measured through quick stretches (0.5% muscle length in 0.1 ms) to assess the relationship between overlap and stiffness.
  • Binding of myosin subfragment-1 to actin occurs independently of free Ca2+ concentration.
  • Rapid stiffness in relaxed muscle fibers is significantly influenced by ionic strength, decreasing at normal levels (mu = 0.17 M).
  • At full overlap, rapid stiffness reaches 100%, while at zero overlap it drops below 20%, indicating structural contributions to resting tension.

Structured PICO

P
Population
Single skinned rabbit psoas muscle fibers and myosin subfragment-1 in vitro
E
Exposure
Low ionic strength (mu = 0.02 M) at 5 degrees C
C
Comparator
Normal ionic strength (mu = 0.17 M)
O
Outcome
Muscle stiffness and cross-bridge attachment to actinsurrogate

The study provides biophysical evidence that cross-bridges attach to actin in relaxed muscle fibers under low ionic strength conditions.

Abstract

In vitro at low ionic strength (mu = 0.02 M) and 5 degrees C, myosin subfragment-1 shows significant binding to regulated actin in the presence of ATP, independent of the concentration of free Ca2+. Under the same conditions, single skinned rabbit psoas muscle fibers develop force only in the presence of Ca2+ and are relaxed in its absence. However, the stiffness, measured with very rapid stretches (0.5% of muscle length in 0.1 ms), is high even when the fibers are relaxed. This "rapid stiffness" of the resting muscle is sensitive to ionic strength, becoming small at normal ionic strength (mu = 0.17 M). At low ionic strength, the rapid stiffness is approximately proportional to the overlap between the actin and myosin filaments. At zero overlap (sarcomere length = 3.8 microns), the stiffness is less than 20% of the value measured at full overlap. This remaining 20% is relatively insensitive to ionic strength, like the passive resting tension, and it may in fact be due to the structures responsible for the resting tension. Thus, both in vitro binding and the effect of overlap on rapid stiffness measurements in fibers suggest that cross-bridges are attached to actin in relaxed muscle at low ionic strength.

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Cite This Study

Brenner et al. (1982) studied this question. Low ionic strength vs. Normal ionic strength was evaluated on Rapid stiffness of resting muscle. Low ionic strength resulted in high rapid stiffness of resting muscle proportional to actin-myosin overlap, suggesting cross-bridges are attached to actin in relaxed muscle.

synapsesocial.com/papers/6a216ca8f6aa648d3a57fc77https://doi.org/10.1073/pnas.79.23.7288
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Also Consider

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

  1. 1Regulation of Binding of Myosin Subfragments with Regulated Actin by Calcium Ions in the Presence of Magnesium ATP11982 · 7 citations
  2. 2The Interaction of Actin with Myosin and Heavy Meromyosin in Solution at Low Ionic Strength1967 · 113 citations
  3. 3Mechanism of the actomyosin adenosine triphosphatase. Evidence that adenosine 5'-triphosphate hydrolysis can occur without dissociation of the actomyosin complex1979 · 248 citations
  4. 4Inhibition of actomyosin ATPase activity by troponin-tropomyosin without blocking the binding of myosin to actin.1982 · 353 citations
  5. 5Calcium-sensitive binding of heavy meromyosin to regulated actin in the presence of ATP.1981 · 42 citations