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September 9, 2017Cytoskeleton14 citations

Unidirectional growth of heavy meromyosin clusters along actin filaments revealed by real‐time fluorescence microscopy

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RHRika HirakawaYNYusuke NishikawaTUTaro Q.P. Uyeda

Key Result

Real-time fluorescence microscopy revealed that heavy meromyosin clusters grow unidirectionally along loosely immobilized actin filaments, suggesting myosin binding induces conformational changes.

Key Points

  • This research aims to explore how heavy meromyosin forms clusters along actin filaments under low ATP concentrations.
  • Observed heavy meromyosin (HMM) clustering using real-time fluorescence microscopy.
  • Actin filaments were immobilized on lipid bilayers and tested with various mixtures of actin and copolymers.
  • Two different anchoring methods (lipid bilayer and biotin-avidin) were employed to compare cluster formation.
  • HMM clusters formed unidirectionally along the actin filaments when loosely immobilized on lipid bilayers.
  • Higher concentrations of HMM-GFP were required to form clusters on glass substrate compared to lipid bilayers.
  • Cofilin clusters formed along loosely immobilized actin but not on anchored filaments, indicating myosin’s influence on actin conformational changes.

Structured PICO

P
Population
Actin filaments and copolymers of actin and acto-S1dC (a chimeric protein of actin and the myosin motor domain)
I
Intervention
Heavy meromyosin (HMM-GFP) under low ATP concentrations
C
Comparator
Actin filaments anchored to glass substrate via stable biotin-avidin linkage versus loosely immobilized on positively charged lipid bilayers
O
Outcome
Formation and growth directionality of HMM clusters along actin filamentssurrogate

This study demonstrates that myosin motor binding induces unidirectional cooperative conformational changes in actin filaments, likely involving changes in the helical twist.

Abstract

Heavy meromyosin (HMM) forms clusters along actin filaments under low ATP concentrations. Here, we observed the growth of HMM clusters under low concentrations of ATP in real time using fluorescence microscopy. When actin filaments were loosely immobilized on positively charged lipid bilayers, clusters of HMM-GFP were readily formed. Time-lapse observation revealed that the clusters grew unidirectionally. When we used a mixture of actin filaments and copolymers of actin and acto-S1dC, a chimeric protein of actin and the myosin motor domain, HMM-GFP preferentially formed clusters along the copolymers. We thus suggest that binding of myosin motors carrying ADP and Pi induces unidirectional conformational changes in actin filaments and allosterically recruits more myosin binding. In contrast, when actin filaments and copolymers were anchored to glass substrate via stable biotin-avidin linkage, higher concentrations of HMM-GFP were required to form clusters than on the lipid bilayer. Moreover, actin filaments and copolymers were not discriminated regarding preferential cluster formation. This is presumably because the myosin-induced cooperative conformational changes in actin filaments involve changes in the helical twist. Consistent with this, cofilin clusters, which supertwist the helix, were readily formed along loosely immobilized actin filaments, but not along those anchored via biotin-avidin linkage.

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Cite This Study

Hirakawa et al. (2017) studied this question. Real-time fluorescence microscopy revealed that heavy meromyosin clusters grow unidirectionally along loosely immobilized actin filaments, suggesting myosin binding induces conformational changes.

synapsesocial.com/papers/6a0cd9667aad2cc6fd1f572chttps://doi.org/10.1002/cm.21408
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Also Consider

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

  1. 1Evidence for biased bidirectional polymerization of actin filaments using heavy meromyosin prepared by an improved method.1975 · 209 citations
  2. 2Dynamic Property of F-Actin and Thin Filament1973 · 96 citations
  3. 3Site-directed mutations of Dictyostelium actin: disruption of a negative charge cluster at the N terminus.1991 · 115 citations
  4. 4Cofilin Changes the Twist of F-Actin: Implications for Actin Filament Dynamics and Cellular Function1997 · 770 citations
  5. 5The Role of Structural Dynamics of Actin in Class-Specific Myosin Motility2015 · 11 citations