Characterizing Dynamic Protein-Protein Interactions Using Differentially Scaled Paramagnetic Relaxation Enhancement

被引:22
|
作者
Yu, Dongmei [1 ]
Volkov, Alexander N. [1 ]
Tang, Chun [1 ]
机构
[1] Univ Missouri, Dept Biochem, Columbia, MO 65211 USA
关键词
TRANSIENT ENCOUNTER COMPLEXES; INTERMOLECULAR DISTANCE RESTRAINTS; COLI PHOSPHOTRANSFERASE SYSTEM; COPPER(II) TRANSPORT SITE; N-TERMINAL DOMAIN; ESCHERICHIA-COLI; NMR-SPECTROSCOPY; MOLECULAR-STRUCTURE; PHOSPHORYL TRANSFER; DISPERSION NMR;
D O I
10.1021/ja906673c
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Paramagnetic relaxation enhancement (PRE) is a powerful NMR technique that allows direct visualization of minor species. The PRE is obtained by conjugating a paramagnetic probe, such as EDTA-Mn2+, at a specific cysteine residue. For a fast exchange between major and minor species, the observed PRE rate approaches population-weighted average of PRE values for both states. We have employed a tripeptide of Cu2+-binding paramagnetic probe that yields a much weaker PRE effect than EDTA-Mn2+ does. We show that by using two probes of different paramagnetic strengths attached at the same site, the relative population and exchange time scale can be extracted, providing that the dynamic event occurs in the second to millisecond regime. Hence, this improved PRE scheme, differentially scaled paramagnetic relaxation enhancement (DiSPRE), permits both temporal and spatial characterization of a dynamic system. When applying the DiSPRE scheme to reassess the weak interactions between the N-terminal domain of enzyme I and phosphocarrier protein (HPr) from the bacterial phopshotransferase system, we have identified a minor species of excited-state complex with a similar to 4% population and exchanging with the stereospecific complex at similar to 1100 s(-1). Such species is distinct from other encounter complexes previously characterized and is likely a result of promiscuity of the HPr binding interface.
引用
收藏
页码:17291 / 17297
页数:7
相关论文
共 50 条
  • [41] The Regulation of AMPA Receptor Endocytosis by Dynamic Protein-Protein Interactions
    Hanley, Jonathan G.
    FRONTIERS IN CELLULAR NEUROSCIENCE, 2018, 12
  • [42] Probing protein-protein interactions by dynamic force correlation spectroscopy
    Barsegov, V
    Thirumalai, D
    PHYSICAL REVIEW LETTERS, 2005, 95 (16)
  • [43] Prediction of Protein-Protein Interactions Based on Protein-Protein Correlation Using Least Squares Regression
    Huang, De-Shuang
    Zhang, Lei
    Han, Kyungsook
    Deng, Suping
    Yang, Kai
    Zhang, Hongbo
    CURRENT PROTEIN & PEPTIDE SCIENCE, 2014, 15 (06) : 553 - 560
  • [44] Detection of Transient Interchain Interactions in the Intrinsically Disordered Protein α-Synuclein by NMR Paramagnetic Relaxation Enhancement
    Wu, Kuen-Phon
    Baum, Jean
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2010, 132 (16) : 5546 - +
  • [45] Characterization of nonspecific protein-DNA interactions by 1H paramagnetic relaxation enhancement
    Iwahara, J
    Schwieters, CD
    Clore, GM
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (40) : 12800 - 12808
  • [46] Analysis of protein-protein interactions using chemical denaturants
    Barrick, DE
    Zweifel, M
    Tripp, K
    Kearns, K
    Kim, S
    BIOPHYSICAL JOURNAL, 1999, 76 (01) : A176 - A176
  • [47] Dissecting Protein-Protein Interactions Using Directed Evolution
    Bonsor, Daniel A.
    Sundberg, Eric J.
    BIOCHEMISTRY, 2011, 50 (13) : 2394 - 2402
  • [48] Predicting disease genes using protein-protein interactions
    Oti, M.
    Snel, B.
    Huynen, M. A.
    Brunner, H. G.
    JOURNAL OF MEDICAL GENETICS, 2006, 43 (08) : 691 - 698
  • [49] Predicting protein-protein interactions using signature products
    Martin, S
    Roe, D
    Faulon, JL
    BIOINFORMATICS, 2005, 21 (02) : 218 - 226
  • [50] Quantification of protein-protein interactions using fluorescence polarization
    Jameson, DM
    Seifried, SE
    METHODS-A COMPANION TO METHODS IN ENZYMOLOGY, 1999, 19 (02): : 222 - 233