Structure and Mechanism of Mouse Cyclase-associated Protein (CAP1) in Regulating Actin Dynamics
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Srv2/CAP is a conserved actin-binding protein with important roles in driving cellular actin dynamics in diverse animal, fungal, and plant species. However, there have been conflicting reports about whether the activities of Srv2/CAP are conserved, particularly between yeast and mammalian homologs. Yeast Srv2 has two distinct functions in actin turnover: its hexameric N-terminal-half enhances cofilin-mediated severing of filaments, while its C-terminal-half catalyzes dissociation of cofilin from ADP-actin monomers and stimulates nucleotide exchange. Here, we dissected the structure and function of mouse CAP1 to better understand its mechanistic relationship to yeast Srv2. Although CAP1 has a shorter N-terminal oligomerization sequence compared with Srv2, we find that the N-terminal-half of CAP1 (N-CAP1) forms hexameric structures with six protrusions, similar to N-Srv2. Further, N-CAP1 autonomously binds to F-actin and decorates the sides and ends of filaments, altering F-actin structure and enhancing cofilin-mediated severing. These activities depend on conserved surface residues on the helical-folded domain. Moreover, N-CAP1 enhances yeast cofilin-mediated severing, and conversely, yeast N-Srv2 enhances human cofilin-mediated severing, highlighting the mechanistic conservation between yeast and mammals. Further, we demonstrate that the C-terminal actin-binding β-sheet domain of CAP1 is sufficient to catalyze nucleotide-exchange of ADP-actin monomers, while in the presence of cofilin this activity additionally requires the WH2 domain. Thus, the structures, activities, and mechanisms of mouse and yeast Srv2/CAP homologs are remarkably well conserved, suggesting that the same activities and mechanisms underlie many of the diverse actin-based functions ascribed to Srv2/CAP homologs in different organisms.
Towsif E, Shekhar S Proc Natl Acad Sci U S A. 2025; 122(5):e2411318122.
PMID: 39874286 PMC: 11804681. DOI: 10.1073/pnas.2411318122.
Boiero Sanders M, Oosterheert W, Hofnagel O, Bieling P, Raunser S Nat Commun. 2024; 15(1):7969.
PMID: 39261469 PMC: 11390976. DOI: 10.1038/s41467-024-52251-3.
Spielmann N, Miller G, Oprea T, Hsu C, Fobo G, Frishman G Nat Cardiovasc Res. 2024; 1(2):157-173.
PMID: 39195995 PMC: 11358025. DOI: 10.1038/s44161-022-00018-8.
Towsif E, Miller B, Ulrichs H, Shekhar S bioRxiv. 2024; .
PMID: 38659736 PMC: 11042253. DOI: 10.1101/2024.04.15.589566.
Kuhn T, Minamide L, Tahtamouni L, Alderfer S, Walsh K, Shaw A Biomedicines. 2024; 12(1).
PMID: 38255199 PMC: 10813319. DOI: 10.3390/biomedicines12010093.