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March 18, 2002The Journal of Cell Biology259 citationsOpen Access

Tropomyosin inhibits ADF/cofilin-dependent actin filament dynamics

SOShoichiro OnoKOKanako Ono

Key Result

Tropomyosin acts as a physiological inhibitor of ADF/cofilin-dependent actin dynamics by binding to F-actin in a mutually exclusive manner with UNC-60B.

Structured PICO

P
Population
Caenorhabditis elegans (C. elegans) model (purified proteins, native thin filaments, and muscle cells)
I
Intervention
Tropomyosin (CeTM) and suppression of CeTM by RNA interference
C
Comparator
Wild-type background vs ADF/cofilin mutant background
O
Outcome
Actin filament dynamics (depolymerization/polymerization), protein binding, actin organization, and worm motilitysurrogate

Tropomyosin acts as a physiological inhibitor of ADF/cofilin-dependent actin dynamics in C. elegans.

Abstract

Tropomyosin binds to actin filaments and is implicated in stabilization of actin cytoskeleton. We examined biochemical and cell biological properties of Caenorhabditis elegans tropomyosin (CeTM) and obtained evidence that CeTM is antagonistic to ADF/cofilin-dependent actin filament dynamics. We purified CeTM, actin, and UNC-60B (a muscle-specific ADF/cofilin isoform), all of which are derived from C. elegans, and showed that CeTM and UNC-60B bound to F-actin in a mutually exclusive manner. CeTM inhibited UNC-60B-induced actin depolymerization and enhancement of actin polymerization. Within isolated native thin filaments, actin and CeTM were detected as major components, whereas UNC-60B was present at a trace amount. Purified UNC-60B was unable to interact with the native thin filaments unless CeTM and other associated proteins were removed by high-salt extraction. Purified CeTM was sufficient to restore the resistance of the salt-extracted filaments from UNC-60B. In muscle cells, CeTM and UNC-60B were localized in different patterns. Suppression of CeTM by RNA interference resulted in disorganized actin filaments and paralyzed worms in wild-type background. However, in an ADF/cofilin mutant background, suppression of CeTM did not worsen actin organization and worm motility. These results suggest that tropomyosin is a physiological inhibitor of ADF/cofilin-dependent actin dynamics.

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Cite This Study

Ono et al. (2002) studied Actin filament dynamics. Tropomyosin (CeTM) vs. UNC-60B (ADF/cofilin) was evaluated on Actin depolymerization and polymerization. Tropomyosin acts as a physiological inhibitor of ADF/cofilin-dependent actin dynamics by binding to F-actin in a mutually exclusive manner with UNC-60B.

synapsesocial.com/papers/6a1ac9c049c6765e3885ebeehttps://doi.org/10.1083/jcb.200110013
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