Literature DB >> 7811954

Actin-crosslinking protein regulation of filament movement in motility assays: a theoretical model.

L W Janson1, D L Taylor.   

Abstract

The interaction of single actin filaments on a myosin-coated coverslip has been modeled by several authors. One model adds a component of "frictional drag" by myosin heads that oppose movement of the actin filaments. We have extended this concept by including the resistive drag from actin crosslinking proteins to understand better the relationship among crosslinking number, actin-myosin force generation, and motility. The validity of this model is supported by agreement with the experimental results from a previous study in which crosslinking proteins were added with myosin molecules under otherwise standard motility assay conditions. The theoretical relationship provides a means to determine many physical parameters that characterize the interaction between a single actin filament and a single actin-crosslinking molecule (various types). In particular, the force constant of a single filamin molecule is calculated as 1.105 pN, approximately 3 times less than a driving myosin head (3.4 pN). Knowledge of this parameter and others derived from this model allows a better understanding of the interaction between myosin and the actin/actin-binding protein cytoskeleton and the role of actin-binding proteins in the regulation and modulation of motility.

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Year:  1994        PMID: 7811954      PMCID: PMC1225450          DOI: 10.1016/S0006-3495(94)80563-6

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  27 in total

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Authors:  H E Huxley
Journal:  J Biol Chem       Date:  1990-05-25       Impact factor: 5.157

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Authors:  J R Simon; R H Furukawa; B R Ware; D L Taylor
Journal:  Cell Motil Cytoskeleton       Date:  1988

Review 3.  The structure and function of alpha-actinin.

Authors:  A Blanchard; V Ohanian; D Critchley
Journal:  J Muscle Res Cell Motil       Date:  1989-08       Impact factor: 2.698

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Authors:  S J Kron; J A Spudich
Journal:  Proc Natl Acad Sci U S A       Date:  1986-09       Impact factor: 11.205

5.  Force measurements by micromanipulation of a single actin filament by glass needles.

Authors:  A Kishino; T Yanagida
Journal:  Nature       Date:  1988-07-07       Impact factor: 49.962

Review 6.  Actin and actin-binding proteins. A critical evaluation of mechanisms and functions.

Authors:  T D Pollard; J A Cooper
Journal:  Annu Rev Biochem       Date:  1986       Impact factor: 23.643

7.  Resemblance of actin-binding protein/actin gels to covalently crosslinked networks.

Authors:  P A Janmey; S Hvidt; J Lamb; T P Stossel
Journal:  Nature       Date:  1990-05-03       Impact factor: 49.962

8.  Movement of myosin-coated fluorescent beads on actin cables in vitro.

Authors:  M P Sheetz; J A Spudich
Journal:  Nature       Date:  1983 May 5-11       Impact factor: 49.962

9.  ADP dissociation from actomyosin subfragment 1 is sufficiently slow to limit the unloaded shortening velocity in vertebrate muscle.

Authors:  R F Siemankowski; M O Wiseman; H D White
Journal:  Proc Natl Acad Sci U S A       Date:  1985-02       Impact factor: 11.205

10.  Smooth muscle myosin cross-bridge interactions modulate actin filament sliding velocity in vitro.

Authors:  D M Warshaw; J M Desrosiers; S S Work; K M Trybus
Journal:  J Cell Biol       Date:  1990-08       Impact factor: 10.539

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  2 in total

1.  Energetics and dynamics of global integrals modeling interaction between stiff filaments.

Authors:  Philipp Reiter; Dieter Felix; Heiko von der Mosel; Wolfgang Alt
Journal:  J Math Biol       Date:  2008-11-08       Impact factor: 2.259

2.  The molecular basis of frictional loads in the in vitro motility assay with applications to the study of the loaded mechanochemistry of molecular motors.

Authors:  Michael J Greenberg; Jeffrey R Moore
Journal:  Cytoskeleton (Hoboken)       Date:  2010-05
  2 in total

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