Ligand-induced dimer-tetramer transition during the activation of the cell surface epidermal growth factor receptor-A multidimensional microscopy analysis

被引:204
作者
Clayton, AHA [1 ]
Walker, F [1 ]
Orchard, SG [1 ]
Henderson, C [1 ]
Fuchs, D [1 ]
Rothacker, J [1 ]
Nice, EC [1 ]
Burgess, AW [1 ]
机构
[1] Royal Melbourne Hosp, Cell Biophys Lab, Melbourne Tumour Biol Branch, Ludwig Inst Canc Res, Melbourne, Vic 3050, Australia
关键词
D O I
10.1074/jbc.M504770200
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
The epidermal growth factor receptor ( EGFR) is a member of the erbB tyrosine kinase family of receptors. For many years it has been believed that receptor activation occurs via a monomer-dimer transition that is associated with a conformational change to activate the kinase. However, little is known about the quaternary state of the receptor at normal levels of expression (< 105 receptors/cell). We employed multidimensional microscopy techniques to gain insight into the state of association of the human EGFR, in the absence and presence of ligand, on the surface of intact BaF/3 cells ( 50,000 receptors/cell). Image correlation microscopy of an EGFR-enhanced green fluorescent protein chimera was used to establish an average degree of aggregation on the submicron scale of 2.2 receptors/cluster in the absence of ligand increasing to 3.7 receptors/cluster in the presence of ligand. Energy transfer measurements between mixtures of fluorescein isothiocyanate-EGF and Alexa 555-EGF were performed using fluorescence lifetime imaging microscopy as a function of the donor: acceptor labeling ratio to gain insight into the spatial disposition of EGFR ligand binding sites on the nanometer scale. In the context of a two-state Forster resonance energy transfer ( FRET)/non-FRET model, the data are consistent with a minimum transfer efficiency of 75% in the FRET population. The microscopy data are related to biophysical data on the EGFR in the A431 cell line and the three-dimensional structure of the ligated EGFR extracellular domain. In the context of a monomerdimer-oligomer model, the biophysical data are consistent with a significant fraction of ligated EGFR tetramers comprising two dimers juxtaposed in a side-by-side ( or slightly staggered) arrangement. Our data are consistent with a specific higher order association of the ligand-bound EGFR on the nanometer scale and indicate the existence of distinct signaling entities beyond the level of the EGFR dimer which could play an important role in receptor transactivation.
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收藏
页码:30392 / 30399
页数:8
相关论文
共 54 条
[41]   Ligand-induced, receptor-mediated dimerization and activation of EGF receptor [J].
Schlessinger, J .
CELL, 2002, 110 (06) :669-672
[42]  
SOROKIN A, 1994, J BIOL CHEM, V269, P9752
[43]   Structure of the epidermal growth factor receptor kinase domain alone and in complex with a 4-anilinoquinazoline inhibitor [J].
Stamos, J ;
Sliwkowski, MX ;
Eigenbrot, C .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (48) :46265-46272
[44]   Suppression of photobleaching-induced artifacts in frequency-domain FLIM by permutation of the recording order [J].
van Munster, EB ;
Gadella, TWJ .
CYTOMETRY PART A, 2004, 58A (02) :185-194
[45]   Quantitative imaging of lateral ErbB1 receptor signal propagation in the plasma membrane [J].
Verveer, PJ ;
Wouters, FS ;
Reynolds, AR ;
Bastiaens, PIH .
SCIENCE, 2000, 290 (5496) :1567-1570
[46]   Biochemical characterization of mutant EGF receptors expressed in the hemopoietic cell line BaF/3 [J].
Walker, F ;
Hibbs, ML ;
Zhang, HH ;
Gonez, LJ ;
Burgess, AW .
GROWTH FACTORS, 1998, 16 (01) :53-67
[47]   CR1/CR2 interactions modulate the functions of the cell surface epidermal growth factor receptor [J].
Walker, F ;
Orchard, SG ;
Jorissen, RN ;
Hall, NE ;
Zhang, HH ;
Hoyne, PA ;
Adams, TE ;
Johns, TG ;
Ward, C ;
Garrett, TPJ ;
Zhu, HJ ;
Nerrie, M ;
Scott, AM ;
Nice, EC ;
Burgess, AW .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (21) :22387-22398
[48]  
WHITEHEAD RH, 1985, JNCI-J NATL CANCER I, V74, P759
[49]   Preparation and characterization of Alexa Fluor 594-labeled epidermal growth factor for fluorescence resonance energy transfer studies: application to the epidermal growth factor receptor [J].
Whitson, KB ;
Beechem, JM ;
Beth, AH ;
Staros, JV .
ANALYTICAL BIOCHEMISTRY, 2004, 324 (02) :227-236
[50]   Untangling the ErbB signalling network [J].
Yarden, Y ;
Sliwkowski, MX .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2001, 2 (02) :127-137