The crystal structure of the asymmetric GroEL–GroES–(ADP)7 chaperonin complex

被引:0
作者
Zhaohui Xu
Arthur L. Horwich
Paul B. Sigler
机构
[1] The Howard Hughes Medical Institute,The Department of Molecular Biophysics and Biochemistry
[2] Yale University,The Department of Genetics
[3] Yale University School of Medicine,undefined
[4] Boyer Center for Molecular Medicine,undefined
来源
Nature | 1997年 / 388卷
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摘要
Chaperonins assist protein folding with the consumption of ATP. They exist as multi-subunit protein assemblies comprising rings of subunits stacked back to back. In Escherichia coli, asymmetric intermediates of GroEL are formed with the co-chaperonin GroES and nucleotides bound only to one of the seven-subunit rings (the cis ring) and not to the opposing ring (the trans ring). The structure of the GroEL–GroES–(ADP)7 complex reveals how large en bloc movements of the cis ring's intermediate and apical domains enable bound GroES to stabilize a folding chamber with ADP confined to the cis ring. Elevation and twist of the apical domains double the volume of the central cavity and bury hydrophobic peptide-binding residues in the interface with GroES, as well as between GroEL subunits, leaving a hydrophilic cavity lining that is conducive to protein folding. An inward tilt of the cis equatorial domain causes an outward tilt in the trans ring that opposes the binding of a second GroES. When combined with new functional results, this negative allosteric mechanism suggests a model for an ATP-driven folding cycle that requires a double toroid.
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页码:741 / 750
页数:9
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共 162 条
[1]  
Hartl FU(1996)Molecular chaperones in cellular protein folding. Nature 381 571-579
[2]  
Fenton WA(1997)GroEL-mediated protein folding. Protein Sci. 6 743-760
[3]  
Horwich AL(1973)Principles that govern the folding of protein chains. Science 181 223-230
[4]  
Anfinsen CB(1989)Reconstitution of active dimeric ribulose bisphosphate carboxylase from an unfolded state depends on two chaperonin proteins and MgATP. Nature 342 884-889
[5]  
Goloubinoff P(1991)GroE facilitates refolding of citrate synthase by suppressing aggregation. Biochemistry 30 1586-1591
[6]  
Christeller JT(1991)Chaperonin-mediated protein folding at the surface of GroEL through a ‘molten globule’-like intermediate. Nature 352 36-42
[7]  
Gatebgy AA(1989)Mitochondrial heat-shock protein hsp60 is essential for assembly of proteins imported into yeast mitochondria. Nature 337 620-625
[8]  
Lorimer GH(1989)The groES and groEL heat shock gene products of J. Bacteriol. 171 1379-1385
[9]  
Buchner J(1993) are essential for bacterial growth at all temperatures. Cell 74 909-917
[10]  
Martin J(1994)Folding Nature 371 578-586