THE FOLDING OF AN ENZYME .5. H/H-2 EXCHANGE NUCLEAR-MAGNETIC-RESONANCE STUDIES ON THE FOLDING PATHWAY OF BARNASE - COMPLEMENTARITY TO AND AGREEMENT WITH PROTEIN ENGINEERING STUDIES

被引:99
|
作者
MATOUSCHEK, A
SERRANO, L
MEIERING, EM
BYCROFT, M
FERSHT, AR
机构
[1] MRC Unit for Protein Function and Design, Cambridge IRC for Protein Engineering, Department of Chemistry, Cambridge, CB2 1EW, Lensfield Road
基金
加拿大自然科学与工程研究理事会;
关键词
PROTEIN FOLDING; STABILITY; HYDROPHOBIC; SECONDARY STRUCTURE;
D O I
10.1016/0022-2836(92)90565-2
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
Two major methods are currently being used to characterize transient intermediates during protein folding at the level of individual residues. Nuclear magnetic resonance (n.m.r.) measurements on the protection of peptide NH hydrogens against exchange with solvent during refolding can provide information about secondary structure formation. Protein engineering and kinetics can provide direct information about intramolecular interactions of protein side-chains and indirect evidence on secondary structure. These procedures have provided the most complete pictures so far about protein folding intermediates. Both methods have been applied to the characterization of an intermediate in the refolding of barnase. Although the two methods give complementary information, there are some regions of the protein where the methods overlap well. We show that, with one possible exception that is obscure, n.m.r. and protein engineering give identical results for those interactions that can be analysed by both methods. This suggests that these are valid approaches for the study of protein folding intermediates in the case of barnase and that the combination of the methods is a powerful analytical procedure. Information provided by n.m.r. data that is complementary to the protein engineering experiments is: (1) early formation of the C terminus of helix2; (2) early formation of helix3; (3) early formation of several β-turns (46-49, 101-104 in loop5); and (5) partial formation of loop5. Confirmatory evidence of protein engineering data on the intermediate is: (1) helix1 is complete from residues 10 to 18; (2) the interactions between all β-strands are present; (3) part of loop2 is not formed; (4) part of loop3 is formed; and (5) some specific tertiary interactions are not made. For some interactions the protein engineering and solH 2H exchange methods overlap directly. The information obtained for direct overlap is self consistent. © 1992.
引用
收藏
页码:837 / 845
页数:9
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