Title of article
Actin Hydrophobic Loop 262–274 and Filament Nucleation and Elongation
Author/Authors
Alexander Shvetsov، نويسنده , , Vitold E. Galkin، نويسنده , , Albina Orlova، نويسنده , , Martin Phillips، نويسنده , , Sarah E. Bergeron، نويسنده , , Peter A. Rubenstein، نويسنده , , Edward H. Egelman، نويسنده , , Emil Reisler، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
9
From page
793
To page
801
Abstract
The importance of actin hydrophobic loop 262–274 dynamics to actin polymerization and filament stability has been shown recently with the use of the yeast mutant actin L180C/L269C/C374A, in which the hydrophobic loop could be locked in a “parked” conformation by a disulfide bond between C180 and C269. Such a cross-linked globular actin monomer does not form filaments, suggesting nucleation and/or elongation inhibition. To determine the role of loop dynamics in filament nucleation and/or elongation, we studied the polymerization of the cross-linked actin in the presence of cofilin, to assist with actin nucleation, and with phalloidin, to stabilize the elongating filament segments. We demonstrate here that together, but not individually, phalloidin and cofilin co-rescue the polymerization of cross-linked actin. The polymerization was also rescued by filament seeds added together with phalloidin but not with cofilin. Thus, loop immobilization via cross-linking inhibits both filament nucleation and elongation. Nevertheless, the conformational changes needed to catalyze ATP hydrolysis by actin occur in the cross-linked actin. When actin filaments are fully decorated by cofilin, the helical twist of filamentous actin (F-actin) changes by ∼ 5° per subunit. Electron microscopic analysis of filaments rescued by cofilin and phalloidin revealed a dense contact between opposite strands in F-actin and a change of twist by ∼ 1° per subunit, indicating either partial or disordered attachment of cofilin to F-actin and/or competition between cofilin and phalloidin to alter F-actin symmetry. Our findings show an importance of the hydrophobic loop conformational dynamics in both actin nucleation and elongation and reveal that the inhibition of these two steps in the cross-linked actin can be relieved by appropriate factors.
Keywords
Actin , hydrophobic loop , Polymerization , cofilin , Phalloidin
Journal title
Journal of Molecular Biology
Serial Year
2008
Journal title
Journal of Molecular Biology
Record number
1256186
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