Energetics and kinetics of cooperative cofilin-actin filament interactions

被引:79
作者
Cao, Wenxiang
Goodarzi, Jim P.
De la Cruz, Enrique M.
机构
[1] Yale Univ, Dept Mol Biophys & Biochem, New Haven, CT 06520 USA
[2] Univ Oregon, Inst Mol Biol, Eugene, OR 97403 USA
[3] Univ Oregon, Dept Chem, Eugene, OR 97403 USA
关键词
cofilin; actin; thermodynamics; kinetics; cooperativity;
D O I
10.1016/j.jmb.2006.06.019
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We have evaluated the thermodynamic parameters associated with cooperative cofilin binding to actin filaments, accounting for contributions of ion-linked equilibria, and determined the kinetic basis of cooperative cofilin binding. Ions weaken non-contiguous (isolated, non-cooperative) cofilin binding to an actin filament without affecting cooperative filament interactions. Non-contiguous cofilin binding is coupled to the dissociation of similar to 1.7 thermodynamically bound counterions. Counterion dissociation contributes similar to 40% of the total cofilin binding free energy (in the presence of 50 MM KCl). The non-contiguous and cooperative binding free energies are driven entirely by large, positive entropy changes, consistent with a cofilin-mediated increase in actin filament structural dynamics. The rate constant for cofilin binding to an isolated site on an actin filament is slow and likely to be limited by filament breathing. Cooperative cofilin binding arises from an approximately tenfold more rapid association rate constant and an approximately twofold slower dissociation rate constant. The more rapid association rate constant is presumably a consequence of cofilin-dependent changes in the average orientation of subdomain 2, subunit angular disorder and filament twist, which increase the accessibility of a neighboring cofilin-binding site on an actin filament. Cooperative association is more rapid than binding to an isolated site, but still slow for a second-order reaction, suggesting that cooperative binding is limited also by binding site accessibility. We suggest that the dissociation of actin-associated ions weakens intersubunit interactions in the actin filament lattice that enhance cofilin-binding site accessibility; favor cooperative binding and promote filament severing. (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:257 / 267
页数:11
相关论文
共 37 条
[1]   KINETICS OF IRREVERSIBLE DISSOCIATION FOR PROTEINS BOUND COOPERATIVELY TO DNA [J].
BALAZS, AC ;
EPSTEIN, IR .
BIOPOLYMERS, 1984, 23 (07) :1249-1259
[2]   ADF/cofilin and actin dynamics in disease [J].
Bamburg, JR ;
Wiggan, OP .
TRENDS IN CELL BIOLOGY, 2002, 12 (12) :598-605
[3]   Mechanism of interaction of Acanthamoeba actophorin (ADF/cofilin) with actin filaments [J].
Blanchoin, L ;
Pollard, TD .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (22) :15538-15546
[4]   Cooperative effects of cofilin (ADF) on actin structure suggest allosteric mechanism of cofilin function [J].
Bobkov, AA ;
Muhlrad, A ;
Pavlov, DA ;
Kokabi, K ;
Yilmaz, A ;
Reisler, E .
JOURNAL OF MOLECULAR BIOLOGY, 2006, 356 (02) :325-334
[5]   Cofilin binding to muscle and non-muscle actin filaments: Isoform-dependent cooperative interactions [J].
De La Cruz, EM .
JOURNAL OF MOLECULAR BIOLOGY, 2005, 346 (02) :557-564
[6]   Kinetics and thermodynamics of phalloidin binding to actin filaments from three divergent species [J].
De La Cruz, EM ;
Pollard, TD .
BIOCHEMISTRY, 1996, 35 (45) :14054-14061
[7]   TRANSIENT KINETIC-ANALYSIS OF RHODAMINE PHALLOIDIN BINDING TO ACTIN-FILAMENTS [J].
DE LA CRUZ, EM ;
POLLARD, TD .
BIOCHEMISTRY, 1994, 33 (48) :14387-14392
[8]   Two opposite effects of cofilin on the thermal unfolding of F-actin: a differential scanning calorimetric study [J].
Dedova, IV ;
Nikolaeva, OP ;
Mikhailova, VV ;
dos Remedios, CG ;
Levitsky, DI .
BIOPHYSICAL CHEMISTRY, 2004, 110 (1-2) :119-128
[9]   Cofilin takes the lead [J].
DesMarais, V ;
Ghosh, M ;
Eddy, R ;
Condeelis, J .
JOURNAL OF CELL SCIENCE, 2005, 118 (01) :19-26
[10]   Crowding in extremophiles: linkage between solvation and weak protein-protein interactions, stability and dynamics, provides insight into molecular adaptation [J].
Ebel, C ;
Zaccai, G .
JOURNAL OF MOLECULAR RECOGNITION, 2004, 17 (05) :382-389