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November 1, 1982European Journal of Biochemistry74 citationsOpen Access

Kinetic and Thermodynamic Properties of the Ternary Complex between F‐actin, Myosin Subfragment 1 and Adenosine 5′‐β,γ‐imidotriphosphate

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MKManfred KonradUniversity of CopenhagenRGRoger S. GoodyMax Planck Institute of Molecular Physiology

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Abstract

Equilibrium constants for the formation of a ternary complex between actin, myosin subfragment 1 (S1) and the non-hydrolyzable ATP analog adenosine 5'-beta, gamma-imidotriphosphate (Ado PPNHP) were determined from light-scattering titrations under a variety of conditions. The affinities of S1 (binding constant K1) and acto . S1 (K4) for AdoPPNHP have relatively low dependencies on temperature (delta H degrees approximately equal to - 15 - 30 kJ mol-1) and ionic strength, in contrast to the affinities of S1 (K2) and S1 . AdoPPNHP (K3) for actin which are influenced quite strongly by temperature (delta H degrees approximately equal to 50 - 65 kJ mol-1) and ionic strength, K2 decreasing by a factor of 10 - 15 between I = 0.05 M and I = 0.2 M and K3 decreasing by a factor of 5.K1, and by detailed balance K2 as well, were found to be about 10-times higher than hitherto reported values (K1 = 3.4 X 10(7) M-1, K2 = 6 X 10(8) M-1, at 24 degrees C,I = 0.09 M, pH 8.0). The binding of ADP to S1 is about 10-fold weaker than that of AdoPPNHP, being however much more exothermic (delta H degrees = - 70 kJ mol-1 at I = 0.1 M) and having a negative standard entropy change (delta S = - 125 J mol-1 K-1), in contrast to AdoPPNHP binding for which the calculated delta S had positive values. The observed rate constant of dissociation of acto . S1 by AdoPPNHP showed an almost hyperbolic dependence on the nucleotide concentration, reaching a maximum of 15 s-1 at I = 0.055 M and 5 s-1 at I = 0.275 M, pH 8.0, 23 degrees C; at 5 degrees C this value was somewhat higher. The rate constant of dissociation of AdoPPNHP from its complex with acto . S1 was estimated to exceed 400 s-1 at 23 degrees C, and to be of the order of 150 s-1 at 4 degrees C. The observed rate constant for the association of the S1 . nucleotide complex and actin was proportional to actin concentrations up to 60 microM, thus defining an apparent second-order rate constant of 2 X 10(4) M-1 s-1 at I = 0.125 M and 23 degrees C. A reaction scheme is proposed in which isomerizations of the acto . S1 and acto . S1 . nucleotide complexes can occur.

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Cite This Study

Konrad et al. (1982) studied this question.

synapsesocial.com/papers/6a71432278a11c550e0b5004https://doi.org/10.1111/j.1432-1033.1982.tb07000.x
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Also Consider

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

  1. 1Interactions of the actin and nucleotide binding sites on myosin subfragment 1.1976 · 63 citations
  2. 2Energetics and mechanism of actomyosin adenosine triphosphatase1976 · 296 citations
  3. 3Dissociation of the actin.subfragment 1 complex by adenyl-5'-yl imidodiphosphate, ADP, and PPi.1980 · 151 citations
  4. 4The interaction of adenyl-5'-yl imidodiphosphate and PPi with actomyosin.1990 · 2 citations
  5. 5Formation of a ternary complex: Actin, 5′-adenylyl imidodiphosphate, and the subfragments of myosin1978 · 45 citations