Journal of Molecular Biology
Volume 245, Issue 5, 3 February 1995, Pages 598-607
Journal home page for Journal of Molecular Biology

Structural Dynamics of F-Actin: II. Cooperativity in Structural Transitions

https://doi.org/10.1006/jmbi.1994.0049Get rights and content

Abstract

A large body of biochemical evidence suggests that the F-actin filament can have internal cooperativity. We have observed large cooperative effects on the low-resolution structure of actin filaments under three very different conditions. First, when G-Ca2+-actin is polymerized by both Mg2+and KCl, filaments may be found in two different populations, with two discrete positions seen for subdomain 2. When G- Ca2+actin is polymerized by only Mg2+, a single F-Mg2+-actin population is seen. The structural data suggest that an entire filament exists with subdomain 2 in one state or the other when there is a heterogenous mixture of Mg2+and Ca2+-actin. Second, when actin filaments are nucleated from gelsolin there is a conformational change that can be observed throughout the filament that is consistent with a large shift in the actin C terminus. There must be a large cooperative propagation of this effect throughout the filament from the nucleation piont. Third, we have used phalloidin to stabilize F-actin in which two C-terminal residues have been proteolytically removed by trypsin. It has been shown biochemically that this stabilization occurs at substoichometric amounts of phalloidin. Phalloidin, at either a 1:1 or a 1:20 molar ratio with actin, restores the connectivity between the long-pitch helical strands. F-actin's internal cooperativity will have large implicationsin vivo, particularly in muscle.

References (0)

Cited by (148)

  • Structural Effects and Functional Implications of Phalloidin and Jasplakinolide Binding to Actin Filaments

    2020, Structure
    Citation Excerpt :

    Phalloidin is commonly used at substoichiometric concentrations for fluorescent labeling, thereby its full negative impact is possibly concealed. It is, however, difficult to assess the extent of the effect of phalloidin in a given experiment, especially when considering the proposed cooperative effect of phalloidin (Orlova et al., 1995; Visegrády et al., 2005). Because of the described possible disadvantages of phalloidin and JASP, we suggest that alternative labels are reconsidered, especially when investigating actin dynamics and protein interactions.

  • Tropomyosin as a Regulator of Actin Dynamics

    2015, International Review of Cell and Molecular Biology
View all citing articles on Scopus
f1

Corresponding author

View full text