Thermodynamics of the high-affinity interaction of TCF4 with β-catenin

被引:56
作者
Knapp, S
Zamai, M
Volpi, D
Nardese, V
Avanzi, N
Breton, J
Plyte, S
Flocco, M
Marconi, M
Isacchi, A
Caiolfa, VR
机构
[1] Pharmacia Corp, Discovery Res Oncol, Dept Struct Chem, I-20014 Nerviano, Italy
[2] Pharmacia Corp, Discovery Res Oncol, Dept Biol, I-20014 Nerviano, Italy
关键词
wnt-signaling; TCF4; beta-catenin; isothermal titration calorimetry; cancer;
D O I
10.1006/jmbi.2001.4463
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 formation of a complex between beta -catenin and members of the TCF/LEF family of high-mobility group proteins is a key regulatory event in the wnt-signaling pathway, essential for embryonal development as well as the growth of normal and malignant colon epithelium. We have characterized the binding of TCF4 to human beta -catenin by steady-state intrinsic fluorescence quenching experiments, surface plasmon resonance (SPR) and isothermal titration calorimetry (TTC). Binding studies in solution and in heterogeneous phase showed that TCF4 binds reversibly to beta -catenin with an affinity (K-B) of 3 (+/-1) 10(8) M-1 Site-directed mutagenesis together with calorimetric measurements, revealed that residue D16 in TCF4 plays a crucial role in high-affinity binding. Mutation of this residue to alanine resulted in a decrease of K-B by two orders of magnitude as well as a significant reduction in binding enthalpy. Binding of TCF4 to beta -catenin gave rise to a large negative enthalpy change at 25 degreesC (-29.7 kcal/mol). Binding enthalpies were strongly temperature dependent, which resulted in the determination of a large heat capacity change upon binding of -1.5 kcal/(mol K). The molecular events that take place upon complex formation are discussed using the measured thermodynamic data together with the crystal structure of the beta -catenin arm repeat region/TCF complex. (C) 2001 Academic Press.
引用
收藏
页码:1179 / 1189
页数:11
相关论文
共 43 条
[1]   ICM - A NEW METHOD FOR PROTEIN MODELING AND DESIGN - APPLICATIONS TO DOCKING AND STRUCTURE PREDICTION FROM THE DISTORTED NATIVE CONFORMATION [J].
ABAGYAN, R ;
TOTROV, M ;
KUZNETSOV, D .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 1994, 15 (05) :488-506
[2]   Functional interaction of beta-catenin with the transcription factor LEF-1 [J].
Behrens, J ;
vonKries, JP ;
Kuhl, M ;
Bruhn, L ;
Wedlich, D ;
Grosschedl, R ;
Birchmeier, W .
NATURE, 1996, 382 (6592) :638-642
[3]   Flexibility of an arginine side chain at a DNA-protein interface [J].
Berglund, H ;
Baumann, H ;
Knapp, S ;
Ladenstein, R ;
Hard, T .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1995, 117 (51) :12883-12884
[4]  
BRUNGER A, 1992, X PLOR MANUAL
[5]  
Christensen J.J., 1976, HDB PROTON IONIZATIO
[6]   Crystallographic analysis of the recognition of a nuclear localization signal by the nuclear import factor karyopherin α [J].
Conti, E ;
Uy, M ;
Leighton, L ;
Blobel, G ;
Kuriyan, J .
CELL, 1998, 94 (02) :193-204
[7]  
Dale TC, 1998, BIOCHEM J, V329, P209
[8]   ANOMALOUS HEAT-CAPACITY OF HYDROPHOBIC SOLVATION [J].
GILL, SJ ;
DEC, SF ;
OLOFSSON, G ;
WADSO, I .
JOURNAL OF PHYSICAL CHEMISTRY, 1985, 89 (17) :3758-3761
[9]   Crystal structure of a β-catenin/Tcf complex [J].
Graham, TA ;
Weaver, C ;
Mao, F ;
Kimelman, D ;
Xu, WQ .
CELL, 2000, 103 (06) :885-896
[10]   ROLE OF THE HYDROPHOBIC EFFECT IN STABILITY OF SITE-SPECIFIC PROTEIN-DNA COMPLEXES [J].
HA, JH ;
SPOLAR, RS ;
RECORD, MT .
JOURNAL OF MOLECULAR BIOLOGY, 1989, 209 (04) :801-816