25.14
Actin filament disassembly is guided by proteins like Cofilin and Gelsolin through distinct mechanisms.
Cofilin, a small protein, binds in a one-on-one ratio with ADP-actin subunits at the F-actin minus-end. As a result, the F-actin twists, reducing the length of each helical turn.
The shrinking F-actin helices generate mechanical stress, increasing the rate of ATP hydrolysis, which makes the filament brittle. This, in turn, eases the release of ADP-actin monomers from the minus-end.
Gelsolin is a multidomain protein regulated by the calcium ion concentration in the cell. With the binding of calcium ions, Gelsolin undergoes a conformational change that allows it to attach to the sides of F-actin.
Upon binding to the sides of F-actin, the activated Gelsolin-calcium inserts itself between actin subunits in the filament, wedging apart the monomers to form a Gelsolin-actin complex.
As a result, the actin filament breaks into two, where one part has a Gelsolin-Calcium capped plus-end and a minus-end with rapidly dissociating ADP-actins.
Actin filaments (F-actin) are composed of actin subunits. The dissociation of actin monomers can occur from either end of F-actin. The rate of dissoci…
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