Title of article :
Cofilin Increases the Bending Flexibility of Actin Filaments: Implications for Severing and Cell Mechanics
Author/Authors :
Brannon R. McCullough، نويسنده , , Laurent Blanchoin، نويسنده , , Jean-Louis Martiel، نويسنده , , Enrique M. De La Cruz، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Abstract :
We determined the flexural (bending) rigidities of actin and cofilactin filaments from a cosine correlation function analysis of their thermally driven, two-dimensional fluctuations in shape. The persistence length of actin filaments is 9.8 μm, corresponding to a flexural rigidity of 0.040 pN μm2. Cofilin binding lowers the persistence length ∼5-fold to a value of 2.2 μm and the filament flexural rigidity to 0.0091 pN μm2. That cofilin-decorated filaments are more flexible than native filaments despite an increased mass indicates that cofilin binding weakens and redistributes stabilizing subunit interactions of filaments. We favor a mechanism in which the increased flexibility of cofilin-decorated filaments results from the linked dissociation of filament-stabilizing ions and reorganization of actin subdomain 2 and as a consequence promotes severing due to a mechanical asymmetry. Knowledge of the effects of cofilin on actin filament bending mechanics, together with our previous analysis of torsional stiffness, provide a quantitative measure of the mechanical changes in actin filaments associated with cofilin binding, and suggest that the overall mechanical and force-producing properties of cells can be modulated by cofilin activity.
Keywords :
Single Molecule , Persistence length , biopolymer mechanics , Imaging , severing
Journal title :
Journal of Molecular Biology
Journal title :
Journal of Molecular Biology