Protein folding and stability of human CDK inhibitor p19INK4d

被引:55
作者
Zeeb, M
Rösner, H
Zeslawski, W
Canet, D
Holak, TA
Balbach, J
机构
[1] Univ Bayreuth, Biochem Lab, D-95440 Bayreuth, Germany
[2] Max Planck Inst Biochem, D-82152 Martinsried, Germany
[3] Univ Oxford, Oxford Ctr Mol Sci, New Chem Lab, Oxford OX1 3QT, England
关键词
p19(INK4d); protein folding intermediate; protein folding; NMR; phenylalanine fluorescence;
D O I
10.1006/jmbi.2001.5242
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
P19(INK4d) is a tumor suppressing protein and belongs to a family of cyclin D-dependent kinase inhibitors of CDK4 and CDK6, which play a key role in human cell cycle control. P19 comprises ten alpha-helices arranged sequentially in five ankyrin repeats forming an elongated structure. This rather simple topology, combined with its physiological function, makes p19 an interesting model protein for folding studies. Urea-induced unfolding transitions monitored by far-UV CD and phenylalanine fluorescence coincide and suggest a two-state mechanism for equilibrium unfolding. Unfolding of p19 followed by 2D H-1-N-15 HSQC spectra revealed a third species at moderate urea concentrations with a maximum population of about 30% near 3.2 M urea. It shows poor chemical shift dispersion, but cross-peaks emerge for some residues that are distinct from the native or unfolded state. This equilibrium intermediate either arises only at high protein concentrations (as in the NMR experiment) or has similar optical properties to the unfolded state. Stopped-flow far-UV CD experiments at various urea concentrations revealed that alpha-helical structure is formed in three phases, of which only the fastest phase (10 s(-1)) depends upon the urea concentration. The kinetic of the slowest phase (0.017 s(-1)) can be resolved by 1D real-time NMR and accelerated by cyclophilin. It is limited in rate by prolyl isomerization, and native-like ordered structure cannot form prior to this isomerization. The two fast phases lead to 83% native protein within the dead time of the NMR experiment. In contrast to p16(INK4a), which exhibits only a marginal stability and high unfolding rates, p19 shows the expected stability for a protein of this size with a clear kinetic barrier between the unfolded and folded state. Therefore, p19 might complement the function of less stable INK4 inhibitors in cell cycle control under unfavorable conditions. (C) 2002 Academic Press.
引用
收藏
页码:447 / 457
页数:11
相关论文
共 45 条
[1]   A protein folding intermediate of ribonuclease T1 characterized at high resolution by 1D and 2D real-time NMR spectroscopy [J].
Balbach, J ;
Steegborn, C ;
Schindler, T ;
Schmid, FX .
JOURNAL OF MOLECULAR BIOLOGY, 1999, 285 (02) :829-842
[2]   FOLLOWING PROTEIN-FOLDING IN REAL-TIME USING NMR-SPECTROSCOPY [J].
BALBACH, J ;
FORGE, V ;
VANNULAND, NAJ ;
WINDER, SL ;
HORE, PJ ;
DOBSON, CM .
NATURE STRUCTURAL BIOLOGY, 1995, 2 (10) :865-870
[3]  
Balbach J., 2000, MECH PROTEIN FOLDING, P212
[4]   Structure of human cyclin-dependent kinase inhibitor p19INK4d:: comparison to known ankyrin-repeat-containing structures and implications for the dysfunction of tumor suppressor p16INK4a [J].
Baumgartner, R ;
Fernandez-Catalan, C ;
Winoto, A ;
Huber, R ;
Engh, RA ;
Holak, TA .
STRUCTURE, 1998, 6 (10) :1279-1290
[5]   CHARACTERIZATION OF AN ASSOCIATED EQUILIBRIUM FOLDING INTERMEDIATE OF BOVINE GROWTH-HORMONE [J].
BREMS, DN ;
PLAISTED, SM ;
KAUFFMAN, EW ;
HAVEL, HA .
BIOCHEMISTRY, 1986, 25 (21) :6539-6543
[6]   Crystal structure of the complex of the cyclin D dependent kinase Cdk6 bound to the cell-cycle inhibitor p19INK4d [J].
Brotherton, DH ;
Dhanaraj, V ;
Wick, S ;
Brizuela, L ;
Domaille, PJ ;
Volyanik, E ;
Xu, X ;
Parisini, E ;
Smith, BO ;
Archer, SJ ;
Serrano, M ;
Brenner, SL ;
Blundell, TL ;
Laue, ED .
NATURE, 1998, 395 (6699) :244-250
[7]   Tumor suppressor p16INK4A:: Determination of solution structure and analyses of its interaction with cyclin-dependent kinase 4 [J].
Byeon, IJL ;
Li, JN ;
Ericson, K ;
Selby, TL ;
Tevelev, A ;
Kim, HJ ;
O'Maille, P ;
Tsai, MD .
MOLECULAR CELL, 1998, 1 (03) :421-431
[8]   FREQUENT SOMATIC MUTATIONS AND HOMOZYGOUS DELETIONS OF THE P16 (MTS1) GENE IN PANCREATIC ADENOCARCINOMA [J].
CALDAS, C ;
HAHN, SA ;
DACOSTA, LT ;
REDSTON, MS ;
SCHUTTE, M ;
SEYMOUR, AB ;
WEINSTEIN, CL ;
HRUBAN, RH ;
YEO, CJ ;
KERN, SE .
NATURE GENETICS, 1994, 8 (01) :27-32
[9]  
CANTOR CR, 1980, BIOPHYSICAL CHEM, V2
[10]  
CHAN FKM, 1995, MOL CELL BIOL, V15, P2682