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December 30, 1998Biochemistry171 citations

Cooperativity and Switching within the Three-State Model of Muscle Regulation

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RMRobin MaytumSLSherwin S. LehrerMGMichael A. Geeves

Key Result

The apparent cooperative unit size (n) of myosin S1 binding to actin filaments depends on the presence of troponin and Ca2+, with the blocked state occupancy reducing KT by 2-3-fold without Ca2+.

Structured PICO

P
Population
Phalloidin-stabilized pyrene-actin filaments (in vitro model of thin filament regulation)
E
Exposure
Presence of troponin (Tn) and Ca2+
C
Comparator
Absence of troponin (Tn) and/or Ca2+
O
Outcome
Equilibrium binding of myosin subfragment 1 (S1) and apparent cooperative unit size (n)surrogate

This basic science study refines the three-state model of muscle regulation by demonstrating that the apparent cooperative unit size depends on both troponin and calcium.

Abstract

Thin filament regulation is mediated by the presence of tropomyosin (Tm) and troponin (Tn) on the actin filament. Binding of Tm alone induces two states, closed and open (with the equilibrium between them defined by KT), which differ in their affinity for myosin subfragment 1 (S1). Cooperative switching between the states results in characteristic sigmoidal myosin S1 binding curves. In the presence of Tn and absence of Ca2+, a third state, blocked, has previously been kinetically shown to be present, leading to the three state model of McKillop and Geeves (1993) Biophys. J. 65, 693-701. We have measured equilibrium binding of S1 to phalloidin-stabilized pyrene-actin filaments by monitoring the pyrene fluorescence at 50 nM, a concentration 10-fold lower than previously possible. In combination with kinetic studies, we show that the data can be fitted to a modified version of the three-state model with an additional term allowing for a varying apparent cooperative unit size (n). Our results show that the apparent cooperative unit size (n) is dependent upon both the presence of Tn and of Ca2+. Also in the absence of Ca2+, the occupancy of the blocked state (defined by KB) is accompanied by a 2-3-fold reduction in KT. These results are discussed in comparison to the Hill model (1980) Proc. Natl. Acad. Sci. U.S.A. 77, 3186-3190 and a flexible model of thin filament regulation based upon that of Lehrer et al. (1997) Biochemistry 36, 13449-13455.

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Cite This Study

Maytum et al. (1998) studied this question. Presence of Troponin (Tn) and Ca2+ vs. Absence of Tn and/or Ca2+ was evaluated on Apparent cooperative unit size (n) and occupancy of the blocked state. The apparent cooperative unit size (n) of myosin S1 binding to actin filaments depends on the presence of troponin and Ca2+, with the blocked state occupancy reducing KT by 2-3-fold without Ca2+.

synapsesocial.com/papers/6a26b94daa29af69e67971adhttps://doi.org/10.1021/bi981603e
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Also Consider

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

  1. 1Steric-model for activation of muscle thin filaments1997 · 472 citations
  2. 2The effect of nucleotide on the binding of myosin subfragment 1 to regulated actin.1982 · 70 citations
  3. 3The structure of the amino terminus of tropomyosin is critical for binding to actin in the absence and presence of troponin.1988 · 124 citations
  4. 4Excimer fluorescence of pyrenyliodoacetamide-labeled tropomyosin: a probe of the state of tropomyosin in reconstituted muscle thin filaments1990 · 83 citations
  5. 5The dynamics of actin and myosin association and the crossbridge model of muscle contraction1991 · 201 citations