Fast events in protein folding: Relaxation dynamics of secondary and tertiary structure in native apomyoglobin

被引:201
作者
Gilmanshin, R
Williams, S
Callender, RH
Woodruff, WH
Dyer, RB
机构
[1] LOS ALAMOS NATL LAB,CST 4,LOS ALAMOS,NM 87545
[2] CUNY CITY COLL,DEPT PHYS,NEW YORK,NY 10031
[3] PHILLIPS LAB,GEOPHYS DIRECTORATE,HANSCOM AFB,MA 01731
关键词
D O I
10.1073/pnas.94.8.3709
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
We report the fast relaxation dynamics of ''native'' apomyoglobin (pH 5.3) following a 10-ns, laser-induced temperature jump. The structural dynamics are probed using time-resolved infrared spectroscopy. The infrared kinetics monitored within the amide I absorbance of the polypeptide backbone exhibit two distinct relaxation phases which have different spectral signatures and occur on very different time scales (nu = 1633 cm(-1) 48 ns; nu = 1650 cm-1, tau = 132 mu s). We assign these two spectral components to discrete substructures in the protein: helical structure that is solvated (1633 cm(-1)) and native helix that is protected from solvation by interhelix tertiary interactions (1650 cm(-1)). Folding rate coefficients inferred from the observed relaxations at 60 degrees C are k(f(solvated)) = (7 to 20) x 10(6) s(-1) and k(f(native)) = 3.6 x 10(3) s(-1), respectively. The faster rate is interpreted as the intrinsic rate of solvated helix formation, whereas the slower rate is interpreted as the rate of formation of tertiary contacts that determine a native helix. Thus, at 60 degrees C helix formation precedes the formation of tertiary structure by over three orders of magnitude in this protein. Furthermore, the distinct thermodynamics and kinetics observed for the apomyoglobin substructures suggest that they fold independently, or quasi-independently. The observation of inhomogeneous folding for apomyoglobin is remarkable, given the relatively small size and structural simplicity of this protein.
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页码:3709 / 3713
页数:5
相关论文
共 34 条
[1]   ALPHA-HELIX FORMATION BY PEPTIDES OF DEFINED SEQUENCE [J].
BALDWIN, RL .
BIOPHYSICAL CHEMISTRY, 1995, 55 (1-2) :127-135
[2]   Direct observation of fast protein folding: The initial collapse of apomyoglobin [J].
Ballew, RM ;
Sabelko, J ;
Gruebele, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (12) :5759-5764
[3]   THE MOLTEN GLOBULE INTERMEDIATE OF APOMYOGLOBIN AND THE PROCESS OF PROTEIN FOLDING [J].
BARRICK, D ;
BALDWIN, RL .
PROTEIN SCIENCE, 1993, 2 (06) :869-876
[4]  
CANTOR CR, 1980, BIOPHYSICAL CHEM, V3, P907
[5]   INTENSITIES AND OTHER SPECTRAL PARAMETERS OF INFRARED AMIDE BANDS OF POLYPEPTIDES IN BETA- AND RANDOM FORMS [J].
CHIRGADZE, YN ;
SHESTOPALOV, BV ;
VENYAMINOV, SY .
BIOPOLYMERS, 1973, 12 (06) :1337-1351
[6]  
COCCO MJ, 1994, PROTEIN SCI, V3, P267
[7]   A COMPARISON OF CONFORMATION OF SPERM WHALE METMYOGLOBIN WITH THAT OF APOMYOGLOBIN [J].
CRUMPTON, MJ ;
POLSON, A .
JOURNAL OF MOLECULAR BIOLOGY, 1965, 11 (04) :722-&
[8]   FOLDING OF APOMINIMYOGLOBIN [J].
DESANCTIS, G ;
ASCOLI, F ;
BRUNORI, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (24) :11507-11511
[9]   THE RADIUS OF GYRATION OF AN APOMYOGLOBIN FOLDING INTERMEDIATE [J].
ELIEZER, D ;
JENNINGS, PA ;
WRIGHT, PE ;
DONIACH, S ;
HODGSON, KO ;
TSURUTA, H .
SCIENCE, 1995, 270 (5235) :487-488
[10]   PROBING THE STRUCTURE OF FOLDING INTERMEDIATES [J].
EVANS, PA ;
RADFORD, SE .
CURRENT OPINION IN STRUCTURAL BIOLOGY, 1994, 4 (01) :100-106