Refolding rate of stability-enhanced cytochrome c is independent of thermodynamic driving force

被引:11
作者
McGee, WA [1 ]
Nall, BT [1 ]
机构
[1] Univ Texas, Hlth Sci Ctr, Dept Biochem, San Antonio, TX 78284 USA
关键词
free energy; global suppressors; iso-2 cytochrome c; protein folding; yeast;
D O I
10.1002/pro.5560070501
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
N52I iso-2 cytochrome c is a variant of yeast iso-2 cytochrome c in which asparagine substitutes for isoleucine 52 in an alpha helical segment composed of residues 49-56. The N52I substitution results in a significant increase in both stability and cooperativity of equilibrium unfolding, and acts as a "global suppressor" of destabilizing mutations. The equilibrium m-value for denaturant-induced unfolding of N52I iso-2 increases by 30%, a surprisingly large amount for a single residue substitution. The folding/unfolding kinetics for N52I iso-2 have been measured by stopped-flow mixing and by manual mixing, and are compared to the kinetics of folding/unfolding of wild-type protein, iso-2 cytochrome c. The results show that the observable folding rate and the guanidine hydrochloride dependence of the folding rate are the same for iso-2 and N52I iso-2, despite the greater thermodynamic stability of N52I iso-2 Thus, there is no linear free-energy relationship between mutation-induced changes in stability and observable refolding rates. However, for N52I iso-2 the unfolding rate is slower and the guanidine hydrochloride dependence of the unfolding rate is smaller than for iso-2. The differences in the denaturant dependence of the unfolding rates suggest that the N52I substitution decreases the change in the solvent accessible hydrophobic surface between the native state and the transition state. Two aspects of the results are inconsistent with a two-state folding/unfolding mechanism and imply the presence of folding intermediates: (1) observable refolding rate constants calculated from the two-state-mechanism by combining equilibrium data and unfolding rate measurements deviate from the observed refolding rate constants; (2) kinetically unresolved signal changes ("burst phase") are observed for both N52I iso-2 and iso-2 refolding. The "burst phase" amplitude is larger for N52I iso-2 than for iso-2, suggesting that the intermediates formed during the "burst phase" are stabilized by the N52I substitution.
引用
收藏
页码:1071 / 1082
页数:12
相关论文
共 44 条
[1]   THE ROLE OF A CONSERVED INTERNAL WATER MOLECULE AND ITS ASSOCIATED HYDROGEN-BOND NETWORK IN CYTOCHROME-C [J].
BERGHUIS, AM ;
GUILLEMETTE, JG ;
MCLENDON, G ;
SHERMAN, F ;
SMITH, M ;
BRAYER, GD .
JOURNAL OF MOLECULAR BIOLOGY, 1994, 236 (03) :786-799
[2]   GENETIC-ANALYSIS OF YEAST ISO-1-CYTOCHROME-C STRUCTURAL REQUIREMENTS - SUPPRESSION OF GLY6 REPLACEMENTS BY AN ASN52-]ILE REPLACEMENT [J].
BERROTERAN, RW ;
HAMPSEY, M .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1991, 288 (01) :261-269
[3]   Side chain packing of the N- and C-terminal helices plays a critical role in the kinetics of cytochrome c folding [J].
Colon, W ;
Elove, GA ;
Wakem, LP ;
Sherman, F ;
Roder, H .
BIOCHEMISTRY, 1996, 35 (17) :5538-5549
[4]   DRAMATIC THERMOSTABILIZATION OF YEAST ISO-1-CYTOCHROME-C BY AN ASPARAGINE-]ISOLEUCINE REPLACEMENT AT POSITION-57 [J].
DAS, G ;
HICKEY, DR ;
MCLENDON, D ;
MCLENDON, G ;
SHERMAN, F .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1989, 86 (02) :496-499
[5]   Changing the transition state for protein (un)folding [J].
Doyle, DF ;
Waldner, JC ;
Parikh, S ;
AlcazarRoman, L ;
Pielak, GJ .
BIOCHEMISTRY, 1996, 35 (23) :7403-7411
[6]   KINETIC MECHANISM OF CYTOCHROME-C FOLDING - INVOLVEMENT OF THE HEME AND ITS LIGANDS [J].
ELOVE, GA ;
BHUYAN, AK ;
RODER, H .
BIOCHEMISTRY, 1994, 33 (22) :6925-6935
[7]   EARLY STEPS IN CYTOCHROME-C FOLDING PROBED BY TIME-RESOLVED CIRCULAR-DICHROISM AND FLUORESCENCE SPECTROSCOPY [J].
ELOVE, GA ;
CHAFFOTTE, AF ;
RODER, H ;
GOLDBERG, ME .
BIOCHEMISTRY, 1992, 31 (30) :6876-6883
[8]  
Ferrin T. E., 1988, J MOL GRAPHICS, V6, P36
[9]   THE MIDAS DISPLAY SYSTEM [J].
FERRIN, TE ;
HUANG, CC ;
JARVIS, LE ;
LANGRIDGE, R .
JOURNAL OF MOLECULAR GRAPHICS, 1988, 6 (01) :13-&
[10]   PROTEIN-FOLDING AND STABILITY - THE PATHWAY OF FOLDING OF BARNASE [J].
FERSHT, AR .
FEBS LETTERS, 1993, 325 (1-2) :5-16