Structural analysis of kinetic folding intermediates for a TIM barrel protein, indole-3-glycerol phosphate synthase, by hydrogen exchange mass spectrometry and G(o)over-bar model simulation

被引:31
作者
Gu, Zhenyu
Rao, Maithreyi K.
Forsyth, William R.
Finke, John M. [1 ]
Matthews, C. Robert
机构
[1] Oakland Univ, Dept Chem, Rochester, MI 48309 USA
[2] Univ Massachusetts, Sch Med, Dept Biochem & Mol Pharmacol, Worcester, MA 01605 USA
[3] Trans Form Pharmaceut Inc, Lexington, MA 02421 USA
关键词
protein folding; kinetic folding mechanism; misfolded intermediate; topology; stable intermediate;
D O I
10.1016/j.jmb.2007.09.024
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
The structures of partially folded states appearing during the folding of a (beta alpha)(8) TIM barrel protein, the indole-3-glycerol phosphate synthase from Sulfolobus solfataricus (sIGPS), was assessed by hydrogen exchange mass spectrometry (HX-MS) and Go model simulations. HX-MS analysis of the peptic peptides derived from the pulse-labeled product of the submillisecond folding reaction from the urea-denatured state revealed strong protection in the (beta alpha)(4) region, modest protection in the neighboring (beta alpha)(1-3) and (beta alpha)(5)beta(6) segments and no significant protection in the remaining N and C-terminal segments. These results demonstrate that this species is not a collapsed form of the unfolded state under native-favoring conditions nor is it the native state formed via fast-track folding. However, the striking contrast of these results with the strong protection observed in the (beta alpha)(2-5)beta(6) region after 5 s of folding demonstrates that these species represent kinetically distinct folding intermediates that are not identical as previously thought. A re-examination of the kinetic folding mechanism by chevron analysis of fluorescence data confirmed distinct roles for these two species: the burst-phase intermediate is predicted to be a misfolded, off-pathway intermediate, while the subsequent 5 s intermediate corresponds to an onpathway equilibrium intermediate. Comparison with the predictions using a C-alpha Go model simulation of the kinetic folding reaction for sIGPS shows good agreement with the core of the structure offering protection against exchange in the on-pathway intermediate(s). Because the native-centric Go model simulations do not explicitly include sequence-specific information, the simulation results support the hypothesis that the topology of TIM barrel proteins is a primary determinant of the folding free energy surface for the productive folding reaction. The early misfolding reaction must involve aspects of non-native structure not detected by the Go model simulation. (c) 2007 Published by Elsevier Ltd.
引用
收藏
页码:528 / 546
页数:19
相关论文
共 62 条
  • [11] Effect of heavy water on protein flexibility
    Cioni, P
    Strambini, GB
    [J]. BIOPHYSICAL JOURNAL, 2002, 82 (06) : 3246 - 3253
  • [12] How native-state topology affects the folding of dihydrofolate reductase and interleukin-1β
    Clementi, C
    Jennings, PA
    Onuchic, JN
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (11) : 5871 - 5876
  • [13] Nonsequential unfolding of the alpha/beta barrel protein indole-3-glycerol-phosphate synthase
    delPino, MMS
    Fersht, AR
    [J]. BIOCHEMISTRY, 1997, 36 (18) : 5560 - 5565
  • [14] DILL KA, 1995, PROTEIN SCI, V4, P561
  • [15] Direct molecular dynamics observation of protein folding transition state ensemble
    Ding, F
    Dokholyan, NV
    Buldyrev, SV
    Stanley, HE
    Shakhnovich, EI
    [J]. BIOPHYSICAL JOURNAL, 2002, 83 (06) : 3525 - 3532
  • [16] Stability of globular proteins in H2O and D2O
    Efimova, Y. M.
    Haemers, S.
    Wierczinski, B.
    Norde, W.
    van Well, A. A.
    [J]. BIOPOLYMERS, 2007, 85 (03) : 264 - 273
  • [17] HYDROGEN-EXCHANGE AND STRUCTURAL DYNAMICS OF PROTEINS AND NUCLEIC-ACIDS
    ENGLANDER, SW
    KALLENBACH, NR
    [J]. QUARTERLY REVIEWS OF BIOPHYSICS, 1983, 16 (04) : 521 - 655
  • [18] HYDROGEN-TRITIUM EXCHANGE OF RANDOM CHAIN POLYPEPTIDE
    ENGLANDER, SW
    POULSEN, A
    [J]. BIOPOLYMERS, 1969, 7 (03) : 379 - +
  • [19] THE EVOLUTION OF ALPHA-BETA-BARREL ENZYMES
    FARBER, GK
    PETSKO, GA
    [J]. TRENDS IN BIOCHEMICAL SCIENCES, 1990, 15 (06) : 228 - &
  • [20] Equilibrium and kinetic folding pathways of a TIM barrel with a funneled energy landscape
    Finke, JM
    Onuchic, JN
    [J]. BIOPHYSICAL JOURNAL, 2005, 89 (01) : 488 - 505