Prediction of the Rotational Tumbling Time for Proteins with Disordered Segments

被引:46
作者
Bae, Sung-Hun
Dyson, H. Jane
Wright, Peter E. [1 ]
机构
[1] Scripps Res Inst, Dept Mol Biol, La Jolla, CA 92037 USA
关键词
INTRINSICALLY UNSTRUCTURED PROTEINS; C-TERMINAL DOMAIN; NMR RELAXATION; BACKBONE DYNAMICS; CRYSTAL-STRUCTURE; PRION PROTEIN; TRANSPORT-PROPERTIES; GLOBULAR-PROTEINS; ESCHERICHIA-COLI; ARBITRARY SHAPE;
D O I
10.1021/ja809687r
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
For well-structured, rigid proteins, the prediction of rotational tumbling time (tau(c)) using atomic coordinates is reasonably accurate, but is inaccurate for proteins with long unstructured sequences. Under physiological conditions, many proteins contain long disordered segments that play important regulatory roles in fundamental biological events including signal transduction and molecular recognition. Here we describe an ensemble approach to the boundary element method that accurately predicts tau(c) for such proteins by introducing two layers of molecular surfaces whose correlated velocities decay exponentially with distance. Reliable prediction of tau(c) will help to detect intra- and intermolecular interactions and conformational switches between more ordered and less ordered states of the disordered segments. The method has been extensively validated using 12 reference proteins with 14 to 103 disordered residues at the N- and/or C-terminus and has been successfully employed to explain a set of published results on a system that incorporates a conformational switch.
引用
收藏
页码:6814 / 6821
页数:8
相关论文
共 54 条
[1]   Boundary element modeling of biomolecular transport [J].
Allison, SA .
BIOPHYSICAL CHEMISTRY, 2001, 93 (2-3) :197-213
[2]   A precise boundary element method for macromolecular transport properties [J].
Aragon, S .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 2004, 25 (09) :1191-1205
[3]  
Aragon S, 2006, BIOPHYS J, V91, P1591, DOI 10.1529/hiophysj.105.078188
[4]  
BAE SH, 2009, UNPUB
[5]   BACKBONE DYNAMICS OF CALMODULIN STUDIED BY N-15 RELAXATION USING INVERSE DETECTED 2-DIMENSIONAL NMR-SPECTROSCOPY - THE CENTRAL HELIX IS FLEXIBLE [J].
BARBATO, G ;
IKURA, M ;
KAY, LE ;
PASTOR, RW ;
BAX, A .
BIOCHEMISTRY, 1992, 31 (23) :5269-5278
[6]   A structural model for unfolded proteins from residual dipolar couplings and small-angle x-ray scattering [J].
Bernadó, P ;
Blanchard, L ;
Timmins, P ;
Marion, D ;
Ruigrok, RWH ;
Blackledge, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (47) :17002-17007
[7]   Structure and dynamics of the nucleocapsid-binding domain of the Sendai virus phosphoprotein in solution [J].
Blanchard, L ;
Tarbouriech, N ;
Blackledge, M ;
Timmins, P ;
Burmeister, WP ;
Ruigrok, RWH ;
Marion, D .
VIROLOGY, 2004, 319 (02) :201-211
[8]   HYDRODYNAMIC STUDIES OF STRUCTURE OF BIOLOGICAL MACROMOLECULES [J].
BLOOMFIELD, VA .
SCIENCE, 1968, 161 (3847) :1212-+
[9]   NMR relaxation studies on the hydrate layer of intrinsically unstructured proteins [J].
Bokor, M ;
Csizmók, V ;
Kovács, D ;
Bánki, P ;
Friedrich, P ;
Tompa, P ;
Tompa, K .
BIOPHYSICAL JOURNAL, 2005, 88 (03) :2030-2037