Structure and function of a protein folding machine:: the eukaryotic cytosolic chaperonin CCT

被引:174
作者
Valpuesta, JM
Martin-Benito, J
Gómez-Puertas, P
Carrascosa, JL
Willison, KR
机构
[1] CSIC, Ctr Nacl Biotecnol, E-28049 Madrid, Spain
[2] Canc Res UK, Ctr Cell & Mol Biol, Inst Canc Res, Chester Beatty Labs, London SW3 6JB, England
关键词
protein folding; WD40; repeats; chaperonin; actin; tubulin;
D O I
10.1016/S0014-5793(02)03180-0
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
Chaperonins are large oligomers made up of two superimposed rings, each enclosing a cavity used for the folding of other proteins. Among the chaperonins, the eukaryotic cytosolic chaperonin CCT is the most complex, not only with regard to its subunit composition but also with respect to its function, still not well understood. Unlike the more well studied eubacterial chaperonin GroEL, which binds any protein that presents stretches of hydrophobic residues, CCT recognises in its substrates specific binding determinants and interacts with them through particular combinations of CCT subunits. Folding then occurs after the conformational changes induced in the chaperonin upon nucleotide binding have occurred, throng a mechanism that, although still poorly defined, clearly differs from the one established for GroEL. Although CCT seems to be mainly involved in the folding of actin and tubulin, other substrates involved in various cellular roles are beginning to be characterised, including many WD40-repeat, 7-blade propeller proteins. (C) 2002 Published by Elsevier Science B.V. on behalf of the Federation of European Biochemical Societies.
引用
收藏
页码:11 / 16
页数:6
相关论文
共 60 条
[1]   Origin and evolution of eukaryotic chaperonins: Phylogenetic evidence for ancient duplications in CCT genes [J].
Archibald, JM ;
Logsdon, JM ;
Doolittle, WF .
MOLECULAR BIOLOGY AND EVOLUTION, 2000, 17 (10) :1456-1466
[2]   THE CRYSTAL-STRUCTURE OF THE BACTERIAL CHAPERONIN GROEL AT 2.8-ANGSTROM [J].
BRAIG, K ;
OTWINOWSKI, Z ;
HEGDE, R ;
BOISVERT, DC ;
JOACHIMIAK, A ;
HORWICH, AL ;
SIGLER, PB .
NATURE, 1994, 371 (6498) :578-586
[3]   A structural model for GroEL-polypeptide recognition [J].
Buckle, AM ;
Zahn, R ;
Fersht, AR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (08) :3571-3575
[4]   The Hsp70 and Hsp60 chaperone machines [J].
Bukau, B ;
Horwich, AL .
CELL, 1998, 92 (03) :351-366
[5]   Structural comparison of prokaryotic and eukaryotic chaperonins [J].
Carrascosa, JL ;
Llorca, O ;
Valpuesta, JM .
MICRON, 2001, 32 (01) :43-50
[6]  
Cowan NJ, 2002, ADV PROTEIN CHEM, V59, P73
[7]   Crystal structure of the thermosome, the archaeal chaperonin and homolog of CCT [J].
Ditzel, L ;
Löwe, J ;
Stock, D ;
Stetter, KO ;
Huber, H ;
Huber, R ;
Steinbacher, S .
CELL, 1998, 93 (01) :125-138
[8]   Evidence that β-tubulin induces a conformation change in the cytosolic chaperonin which stabilizes binding:: Implications for the mechanism of action [J].
Dobrzynski, JK ;
Sternlicht, ML ;
Peng, I ;
Farr, GW ;
Sternlicht, H .
BIOCHEMISTRY, 2000, 39 (14) :3988-4003
[9]   Review: Cellular substrates of the eukaryotic chaperonin TRiC/CCT [J].
Dunn, AY ;
Melville, MW ;
Frydman, J .
JOURNAL OF STRUCTURAL BIOLOGY, 2001, 135 (02) :176-184
[10]  
Ellis R. John, 1996, P1