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January 23, 2025Trends in Cell Biology16 citationsOpen Access

Structural insights into actin filament turnover

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WOWout OosterheertMSMicaela Boiero SandersPBPeter Bieling

Key Result

Recent high-resolution structures of actin filament assemblies provide molecular insights into actin polymerization, growth at the barbed end, and pointed-end depolymerization.

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Actin filament turnover

Abstract

The dynamic turnover of actin filaments drives the morphogenesis and migration of all eukaryotic cells. This review summarizes recent insights into the molecular mechanisms of actin polymerization and disassembly obtained through high-resolution structures of actin filament assemblies. We first describe how, upon polymerization, actin subunits age within the filament through changes in their associated adenine nucleotide. We then focus on the molecular basis of actin filament growth at the barbed end and how this process is modulated by core regulators such as profilin, formin, and capping protein (CP). Finally, the mechanisms underlying actin filament pointed-end depolymerization through disassembly factors cofilin/cyclase-associated protein (CAP) or DNase I are discussed. These findings contribute to a structural understanding of how actin filament dynamics are regulated in a complex cellular environment.

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Oosterheert et al. (2025) conducted a review in Actin filament turnover. Recent high-resolution structures of actin filament assemblies provide molecular insights into actin polymerization, growth at the barbed end, and pointed-end depolymerization.

synapsesocial.com/papers/6a0cd9667aad2cc6fd1f571dhttps://doi.org/10.1016/j.tcb.2024.12.009
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