Models of the cooperative mechanism for Rho effector recognition - Implications for RhoA-mediated effector activation

被引:57
作者
Blumenstein, L [1 ]
Ahmadian, MR [1 ]
机构
[1] Max Planck Inst Mol Physiol, Dept Biol Struct, D-44227 Dortmund, Germany
关键词
D O I
10.1074/jbc.M409551200
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
Activated GTPases of the Rho family regulate a spectrum of functionally diverse downstream effectors, initiating a network of signal transduction pathways by interaction and activation of effector proteins. Although effectors are defined as proteins that selectively bind the GTP-bound state of the small GTPases, there have been also several indications for a nucleotide-independent binding mode. By characterizing the molecular mechanism of RhoA interaction with its effectors, we have determined the equilibrium dissociation constants of several Rho-binding domains of three different effector proteins ( Rhotekin, ROCKI/ROKbeta/p160ROCK, PRK1/ PKNalpha where ROK is RhoA-binding kinase) for both RhoA . GDP and RhoA . GTP using fluorescence spectroscopy. In addition, we have identified two novel Rho-interacting domains in ROCKI, which bind RhoA with high affinity but not Cdc42 or Rac1. Our results, together with recent structural data, support the notion of multiple effector-binding sites in RhoA and strongly indicate a cooperative binding mechanism for PRK1 and ROCKI that may be the molecular basis of Rho-mediated effector activation.
引用
收藏
页码:53419 / 53426
页数:8
相关论文
共 75 条
[61]   Characterization of the interaction between RhoA and the amino-terminal region of PKN [J].
Shibata, H ;
Mukai, H ;
Inagaki, Y ;
Homma, Y ;
Kimura, K ;
Kaibuchi, K ;
Narumiya, S ;
Ono, Y .
FEBS LETTERS, 1996, 385 (03) :221-224
[62]   The core FH2 domain of diaphanous-related formins is an elongated actin binding protein that inhibits polymerization [J].
Shimada, A ;
Nyitrai, M ;
Vetter, IR ;
Kühlmann, D ;
Bugyi, B ;
Narumiya, S ;
Geeves, MA ;
Wittinghofer, A .
MOLECULAR CELL, 2004, 13 (04) :511-522
[63]   Intermolecular and intramolecular interactions regulate catalytic activity of myotonic dystrophy kinase-related Cdc42-binding kinase α [J].
Tan, I ;
Seow, KT ;
Lim, L ;
Leung, T .
MOLECULAR AND CELLULAR BIOLOGY, 2001, 21 (08) :2767-2778
[64]   Delineation of the Cdc42/Rac-binding domain of p21-activated kinase [J].
Thompson, G ;
Owen, D ;
Chalk, PA ;
Lowe, PN .
BIOCHEMISTRY, 1998, 37 (21) :7885-7891
[65]   Signal transduction - The guanine nucleotide-binding switch in three dimensions [J].
Vetter, IR ;
Wittinghofer, A .
SCIENCE, 2001, 294 (5545) :1299-1304
[66]   Kinectin Is a Key Effector of RhoG Microtubule-Dependent Cellular Activity [J].
Vignal, E ;
Blangy, A ;
Martin, M ;
Gauthier-Rouvière, C ;
Fort, P .
MOLECULAR AND CELLULAR BIOLOGY, 2001, 21 (23) :8022-8034
[67]   The PRK2 kinase is a potential effector target of both Rho and Rac GTPases and regulates actin cytoskeletal organization [J].
Vincent, S ;
Settleman, J .
MOLECULAR AND CELLULAR BIOLOGY, 1997, 17 (04) :2247-2256
[68]   Specificity of Rho insert-mediated activation of phospholipase D1 [J].
Walker, SJ ;
Brown, HA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (29) :26260-26267
[69]   The formins: active scaffolds that remodel the cytoskeleton [J].
Wallar, BJ ;
Alberts, AS .
TRENDS IN CELL BIOLOGY, 2003, 13 (08) :435-446
[70]   Protein kinase N (PKN) and PKN-related protein rhophilin as targets of small GTPase Rho [J].
Watanabe, G ;
Saito, Y ;
Madaule, P ;
Ishizaki, T ;
Fujisawa, K ;
Morii, N ;
Mukai, H ;
Ono, Y ;
Kakizuka, A ;
Narumiya, S .
SCIENCE, 1996, 271 (5249) :645-648