6rsq
From Proteopedia
Helical folded domain of mouse CAP1
Structural highlights
FunctionCAP1_MOUSE Directly regulates filament dynamics and has been implicated in a number of complex developmental and morphological processes, including mRNA localization and the establishment of cell polarity. Publication Abstract from PubMedThe ability of cells to generate forces through actin filament turnover was an early adaptation in evolution. While much is known about how actin filaments grow, mechanisms of their disassembly are incompletely understood. The best-characterized actin disassembly factors are the cofilin family proteins, which increase cytoskeletal dynamics by severing actin filaments. However, the mechanism by which severed actin filaments are recycled back to monomeric form has remained enigmatic. We report that cyclase-associated-protein (CAP) works in synergy with cofilin to accelerate actin filament depolymerization by nearly 100-fold. Structural work uncovers the molecular mechanism by which CAP interacts with actin filament pointed end to destabilize the interface between terminal actin subunits, and subsequently recycles the newly-depolymerized actin monomer for the next round of filament assembly. These findings establish CAP as a molecular machine promoting rapid actin filament depolymerization and monomer recycling, and explain why CAP is critical for actin-dependent processes in all eukaryotes. Mechanism of synergistic actin filament pointed end depolymerization by cyclase-associated protein and cofilin.,Kotila T, Wioland H, Enkavi G, Kogan K, Vattulainen I, Jegou A, Romet-Lemonne G, Lappalainen P Nat Commun. 2019 Nov 22;10(1):5320. doi: 10.1038/s41467-019-13213-2. PMID:31757941[1] From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine. See AlsoReferences
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