Effects of Interactions with the GroEL Cavity on Protein Folding Rates

被引:30
|
作者
Sirur, Anshul [1 ]
Best, Robert B. [1 ]
机构
[1] Univ Cambridge, Dept Chem, Cambridge CB2 1EW, England
基金
英国生物技术与生命科学研究理事会;
关键词
MOLECULAR CHAPERONES; MACROMOLECULAR STRUCTURE; ESCHERICHIA-COLI; CONFINED SPACES; CAGE; SIMULATIONS; BINDING; LANDSCAPE; RHODANESE; THERMODYNAMICS;
D O I
10.1016/j.bpj.2013.01.034
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Encapsulation of proteins in chaperonins is an important mechanism by which the cell prevents the accumulation of misfolded species in the cytosol. However, results from theory and simulation for repulsive cavities appear to be inconsistent with recent experimental results showing, if anything, a slowdown in folding rate for encapsulated Rhodanese. We study the folding of Rhodanese in GroEL, using coarse-grained molecular simulations of the complete system including chaperonin and substrate protein. We find that, by approximating the substrate:GroEL interactions as repulsive, we obtain a strong acceleration in rate of between one and two orders of magnitude; a similar result is obtained by representing the chaperonin as a simple spherical cavity. Remarkably, however, we find that using a carefully parameterized, sequence-based potential to capture specific residue-residue interactions between Rhodanese and the GroEL cavity walls induces a very strong reduction of the folding rates. The effect of the interactions is large enough to completely offset the effects of confinement, such that folding in some cases can be even slower than that of the unconfined protein. The origin of the slowdown appears to be stabilization-relative to repulsive confinement-of the unfolded state through binding to the cavity walls, rather than a reduction of the diffusion coefficient along the folding coordinate.
引用
收藏
页码:1098 / 1106
页数:9
相关论文
共 50 条
  • [21] GROEL-MEDIATED PROTEIN-FOLDING
    HORWICH, AL
    WEISSMAN, JA
    SAIBIL, HR
    FENTON, WA
    MOLECULAR BIOLOGY OF THE CELL, 1995, 6 : 34 - 34
  • [22] Impact of hydrodynamic interactions on protein folding rates depends on temperature
    Zegarra, Fabio C.
    Homouz, Dirar
    Eliaz, Yossi
    Gasic, Andrei G.
    Cheung, Margaret S.
    PHYSICAL REVIEW E, 2018, 97 (03)
  • [23] Perturbed ATPase activity and not "close confinement" of substrate in the cis cavity affects rates of folding by tail-multiplied GroEL
    Farr, George W.
    Fenton, Wayne A.
    Horwich, Arthur L.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (13) : 5342 - 5347
  • [24] The ins and outs of GroEL-mediated protein folding
    Weissman, JS
    MOLECULAR CELL, 2001, 8 (04) : 730 - 732
  • [25] GroEL stimulates protein folding through forced unfolding
    Lin, Zong
    Madan, Damian
    Rye, Hays S.
    NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2008, 15 (03) : 303 - 311
  • [26] Structure and function in GroEL-mediated protein folding
    Sigler, PB
    Xu, ZH
    Rye, HS
    Burston, SG
    Fenton, WA
    Horwich, AL
    ANNUAL REVIEW OF BIOCHEMISTRY, 1998, 67 : 581 - 608
  • [27] Effects of Confinement and Interfacial interactions on Protein Folding
    Zangaro, Jacob
    PROTEIN SCIENCE, 2024, 33 : 104 - 104
  • [28] Protein folding assisted by the GroEL/GroES chaperonin system
    Martin, J
    BIOCHEMISTRY-MOSCOW, 1998, 63 (04) : 374 - 381
  • [29] Protein folding assisted by the GroEL/GroES chaperonin system
    Martin, J.
    Biokhimiya, 1998, 63 (04): : 444 - 452
  • [30] Single molecule studies of the influence of GroEL in protein folding
    Mueller, Barbara K.
    Sharma, Shruti
    Chakraborty, Kausik
    Hartl, F. Ulrich
    Hayer-Hartl, Marajit K.
    Lamb, Don C.
    BIOPHYSICAL JOURNAL, 2007, : 534A - 534A