The role of scaffold proteins in MEK/ERK signalling

被引:52
作者
Sacks, D. B.
机构
[1] Brigham & Womens Hosp, Dept Pathol, Boston, MA 02115 USA
[2] Harvard Univ, Sch Med, Boston, MA 02115 USA
关键词
growth factor; IQGAP1; kinase suppressor of Ras (KSR); mitogen-activated protein kinase (MAPK); mitogen-activated protein kinase/extracellular-signal-regulated kinase kinase (MEK); scaffold;
D O I
10.1042/BST0340833
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
Signal transduction networks allow cells to recognize and respond to changes in the extracellular environment. All eukaryotic cells have MAPK (mitogen-activated protein kinase) pathways that participate in diverse cellular functions, including differentiation, survival, transformation and movement. Five distinct groups of MAPKs have been characterized in mammals, the most extensively studied of which is the Ras/Raf/MEK [MAPK/ERK (extracellular-signal-regulated kinase) kinase]/ERK cascade. Numerous stimuli, including growth factors and phorbol esters, activate MEK/ERK signalling. How disparate extracellular signals are translated by MEK/ERK into different cellular functions remains obscure. originally identified in yeast, scaffold proteins are now recognized to contribute to the specificity of MEK/ERK pathways in mammalian cells. These scaffolds include KSR (kinase suppressor of Ras), beta-arrestin, MEK partner-1, Sef and IQGAP1. Scaffolds organize multiprotein signalling complexes. This targets MEK/ERK to specific substrates and facilitates communication with other pathways, thereby mediating diverse functions. The adaptor proteins regulate the kinetics, amplitude and localization of MEK/ERK signalling, providing an efficient mechanism that enables an individual extracellular stimulus to promote a specific biological response.
引用
收藏
页码:833 / 836
页数:4
相关论文
共 43 条
[21]   The mechanism for regulation of the F-actin binding activity of IQGAP1 by calcium/calmodulin [J].
Mateer, SC ;
McDaniel, AE ;
Nicolas, V ;
Habermacher, GM ;
Lin, MJS ;
Cromer, DA ;
King, ME ;
Bloom, GS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (14) :12324-12333
[22]   Ras regulates assembly of mitogenic signalling complexes through the effector protein IMP [J].
Matheny, SA ;
Chen, CY ;
Kortum, RL ;
Razidlo, GL ;
Lewis, RE ;
White, MA .
NATURE, 2004, 427 (6971) :256-260
[23]   The zinc- and calcium-binding S100B interacts and co-localizes with IQGAP1 during dynamic rearrangement of cell membranes [J].
Mbele, GO ;
Deloulme, JC ;
Gentil, BJ ;
Delphin, C ;
Ferro, M ;
Garin, J ;
Takahashi, M ;
Baudier, J .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (51) :49998-50007
[24]   Identification of a putative effector for Cdc42Hs with high sequence similarity to the RasGAP-related protein IQGAP1 and a Cdc42Hs binding partner with similarity to IQGAP2 [J].
McCallum, SJ ;
Wu, WJ ;
Cerione, RA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (36) :21732-21737
[25]   SIGNAL TRANSDUCTION - HOW RECEPTORS TURN RAS ON [J].
MCCORMICK, F .
NATURE, 1993, 363 (6424) :15-16
[26]   The pool of MAP kinase associated with microtubules is small but constitutively active [J].
MorishimaKawashima, M ;
Kosik, KS .
MOLECULAR BIOLOGY OF THE CELL, 1996, 7 (06) :893-905
[27]   Regulation of map kinase signaling modules by scaffold proteins in mammals [J].
Morrison, DK ;
Davis, RJ .
ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY, 2003, 19 :91-118
[28]   The complexity of Raf-1 regulation [J].
Morrison, DK ;
Cutler, RE .
CURRENT OPINION IN CELL BIOLOGY, 1997, 9 (02) :174-179
[29]   C-TAK1 regulates Ras signaling by phosphorylating the MAPK scaffold, KSR1 [J].
Müller, J ;
Ory, S ;
Copeland, T ;
Piwnica-Worms, H ;
Morrison, DK .
MOLECULAR CELL, 2001, 8 (05) :983-993
[30]   Kinase suppressor of Ras (KSR) is a scaffold which facilitates mitogen-activated protein kinase activation in vivo [J].
Nguyen, A ;
Burack, WR ;
Stock, JL ;
Kortum, R ;
Chaika, OV ;
Afkarian, M ;
Muller, WJ ;
Murphy, KM ;
Morrison, DK ;
Lewis, RE ;
McNeish, J ;
Shaw, AS .
MOLECULAR AND CELLULAR BIOLOGY, 2002, 22 (09) :3035-3045