Literature DB >> 12486217

Mechanism of regulation of phosphate dissociation from actomyosin-ADP-Pi by thin filament proteins.

David H Heeley1, Betty Belknap, Howard D White.   

Abstract

Regulation by calcium and myosin-S1 of the acceleration of the rate of phosphate release from myosin-ADP-inorganic phosphate (M-ADP-Pi) by the thin filament actin-tropomyosin (Tm)-troponin (Tn), was measured directly by using double mixing stopped-flow experiments with fluorescent phosphate binding protein. At low calcium and without rigor myosin-S1, saturating concentrations of thin filaments accelerate the rate of phosphate dissociation from M-ADP-Pi 8-fold, from 0.08 to 0.64 s(-1). If either myosin-S1 or calcium is bound to the thin filaments, phosphate release is a biphasic process in which the fast phase is the dissociation of Pi from actoTmTnM-ADP-Pi and the slow phase is limited by the hydrolysis of actoTmTnM-ATP to actoTmTnM-ADP-Pi. The maximum accelerations of the fast components by saturating thin filaments (relative to M-ADP-Pi alone) are: approximately equal 200-fold, 16 s(-1) (calcium only); approximately equal 400-fold, 30 s(-1) (EGTA and rigor S1); and approximately equal1,000-fold, 75 s(-1) (calcium and rigor S1). The maximum rate of phosphate dissociation attained with S1 and calcium bound to the thin filament is the same as for unregulated actin. Regulation of the rate of phosphate dissociation by calcium and myosin-S1 is partially explained by the model of Geeves [McKillop, D. F. and Geeves, M. A. (1993) Biophys. J. 65, 693-701], in which calcium and rigor S1 perturb the equilibria among three states of the thin filament (blocked, closed, and open). However, a quantitative description of the regulatory mechanism requires acceleration by calcium of an additional step of the mechanism, either phosphate dissociation or a preceding conformational change.

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Year:  2002        PMID: 12486217      PMCID: PMC139212          DOI: 10.1073/pnas.252236399

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  27 in total

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Journal:  J Biol Chem       Date:  1982-07-25       Impact factor: 5.157

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Journal:  J Biol Chem       Date:  1982-03-10       Impact factor: 5.157

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Journal:  J Biol Chem       Date:  1981-01-25       Impact factor: 5.157

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Journal:  Proc Natl Acad Sci U S A       Date:  1980-05       Impact factor: 11.205

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Journal:  J Biol Chem       Date:  2000-09-08       Impact factor: 5.157

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  24 in total

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Authors:  Joseph M Chalovich
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2.  Kinetics of regulated actin transitions measured by probes on tropomyosin.

Authors:  Emma Borrego-Diaz; Joseph M Chalovich
Journal:  Biophys J       Date:  2010-06-02       Impact factor: 4.033

3.  Dual regulatory functions of the thin filament revealed by replacement of the troponin I inhibitory peptide with a linker.

Authors:  Julie Mouannes Kozaili; Daniel Leek; Larry S Tobacman
Journal:  J Biol Chem       Date:  2010-10-02       Impact factor: 5.157

4.  Low temperature dynamic mapping reveals unexpected order and disorder in troponin.

Authors:  Devanand Kowlessur; Larry S Tobacman
Journal:  J Biol Chem       Date:  2010-10-02       Impact factor: 5.157

5.  Negative charges at protein kinase C sites of troponin I stabilize the inactive state of actin.

Authors:  Mohit C Mathur; Tomoyoshi Kobayashi; Joseph M Chalovich
Journal:  Biophys J       Date:  2007-09-14       Impact factor: 4.033

6.  Stabilization of helical order in the thick filaments by blebbistatin: further evidence of coexisting multiple conformations of myosin.

Authors:  Sengen Xu; Howard D White; Gerald W Offer; Leepo C Yu
Journal:  Biophys J       Date:  2009-05-06       Impact factor: 4.033

7.  Measurement of Nucleotide Hydrolysis Using Fluorescent Biosensors for Phosphate.

Authors:  Simone Kunzelmann
Journal:  Methods Mol Biol       Date:  2021

8.  Some binding properties of Omp T digested muscle tropomyosin.

Authors:  Charitha L Goonasekara; Lisa J Gallivan; Donna M Jackman; David H Heeley
Journal:  J Muscle Res Cell Motil       Date:  2007-09-06       Impact factor: 2.698

9.  Ca2+-induced movement of tropomyosin on native cardiac thin filaments revealed by cryoelectron microscopy.

Authors:  Cristina Risi; Jamie Eisner; Betty Belknap; David H Heeley; Howard D White; Gunnar F Schröder; Vitold E Galkin
Journal:  Proc Natl Acad Sci U S A       Date:  2017-06-12       Impact factor: 11.205

10.  Significance of troponin dynamics for Ca2+-mediated regulation of contraction and inherited cardiomyopathy.

Authors:  Devanand Kowlessur; Larry S Tobacman
Journal:  J Biol Chem       Date:  2012-10-12       Impact factor: 5.157

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