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October 1, 1987Journal of Biological Chemistry229 citationsOpen Access

Effect of rigor and cycling cross-bridges on the structure of troponin C and on the Ca2+ affinity of the Ca2+-specific regulatory sites in skinned rabbit psoas fibers.

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KGK. GūthJPJohn D. Potter

Key Result

Cycling cross-bridges increased the apparent Ca2+ affinity of the regulatory sites in the thin filament at least 10-fold, compared to a 2-fold increase by rigor cross-bridges.

Structured PICO

P
Population
Skinned rabbit psoas fibers (small bundles) with intrinsic troponin C replaced by dansylaziridine-labeled TnC
I
Intervention
Cycling myosin cross-bridges (in the presence of ATP)
C
Comparator
Rigor myosin cross-bridges
O
Outcome
Apparent Ca2+ affinity of the regulatory sites in the thin filament and fluorescence of dansylaziridine-labeled TnCsurrogate

Cycling cross-bridges strongly couple with Ca2+ regulatory sites in the thin filament, increasing Ca2+ affinity at least 10-fold during muscle activation.

Abstract

Intrinsic troponin C (TnC) was extracted from small bundles of rabbit psoas fibers and replaced with TnC labeled with dansylaziridine (5-dimethylaminonaphthalene-1-sulfonyl). The flourescence of incorporated dansylaziridine-labeled TnC was enhanced by the binding of Ca2+ to the Ca2+-specific (regulatory) sites of TnC and was measured simultaneously with force (Zot, H.G., Güth, K., and Potter, J.D. (1986) J. Biol. Chem. 261, 15883-15890). Various myosin cross-bridge states also altered the fluorescence of dansylaziridine-labeled TnC in the filament, with cycling cross-bridges having a greater effect than rigor cross-bridges; and in both cases, there was an additional effect of Ca2+. The paired fluorescence and tension data were used to calculate the apparent Ca2+ affinity of the regulatory sites in the thin filament and were shown to increase at least 10-fold during muscle activation presumably due to the interaction of cycling cross-bridges with the thin filament. The cross-bridge state responsible for this enhanced Ca2+ affinity was shown to be the myosin-ADP state present only when cross-bridges are cycling. The steepness of the pCa force curves (where pCa represents the -log of the free Ca2+ concentration) obtained in the presence of ATP at short and long sarcomere lengths was the same, suggesting that cooperative interactions between adjacent troponin-tropomyosin units may spread along much of the actin filament when cross-bridges are attached to it. In contrast to the cycling cross-bridges, rigor bridges only increased the Ca2+ affinity of the regulatory sites 2-fold. Taken together, the results presented here indicate a strong coupling between the Ca2+ regulatory sites and cross-bridge interactions with the thin filament.

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Cite This Study

Gūth et al. (1987) studied this question. Cycling cross-bridges vs. Rigor cross-bridges was evaluated on Apparent Ca2+ affinity of the regulatory sites in the thin filament. Cycling cross-bridges increased the apparent Ca2+ affinity of the regulatory sites in the thin filament at least 10-fold, compared to a 2-fold increase by rigor cross-bridges.

synapsesocial.com/papers/6a6337373eb69703d1b70153https://doi.org/10.1016/s0021-9258(19)76474-6
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Also Consider

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

  1. 1RELATIONSHIPS BETWEEN CHEMICAL AND MECHANICAL EVENTS DURING MUSCULAR CONTRACTION1986 · 244 citations
  2. 2Crosslinked myosin subfragment 1: a stable analogue of the subfragment-1.ATP complex.1983 · 108 citations
  3. 3Cooperative binding to the Ca2+-specific sites of troponin C in regulated actin and actomyosin.1983 · 137 citations
  4. 4A fluorescent probe study of Ca2+ binding to the Ca2+-specific sites of cardiac troponin and troponin C.1980 · 150 citations
  5. 5Initiation of active contraction by photogeneration of adenosine‐5'‐triphosphate in rabbit psoas muscle fibres.1984 · 150 citations