The transition state structure for coupled binding and folding of disordered protein domains

被引:79
作者
Dogan, Jakob [1 ]
Mu, Xin [1 ]
Engstrom, Ake [1 ]
Jemth, Per [1 ]
机构
[1] Uppsala Univ, Dept Med Biochem & Microbiol, SE-75123 Uppsala, Sweden
来源
SCIENTIFIC REPORTS | 2013年 / 3卷
基金
瑞典研究理事会;
关键词
SIDE-CHAIN INTERACTIONS; CONFORMATIONAL SELECTION; TRANSACTIVATION DOMAIN; INTRINSIC DISORDER; COACTIVATOR; COMPLEX; MECHANISM; RECOGNITION; ASSOCIATION; CBP;
D O I
10.1038/srep02076
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
Intrinsically disordered proteins are abundant in the eukaryotic proteome, and they are implicated in a range of different diseases. However, there is a paucity of experimental data on molecular details of the coupled binding and folding of such proteins. Two interacting and relatively well studied disordered protein domains are the activation domain from the p160 transcriptional co-activator ACTR and the nuclear co-activator binding domain (NCBD) of CREB binding protein. We have analyzed the transition state for their coupled binding and folding by protein engineering and kinetic experiments (Phi-value analysis) and found that it involves weak native interactions between the N-terminal helices of ACTR and NCBD, but is otherwise "disordered-like". Most native hydrophobic interactions in the interface between the two domains form later, after the rate-limiting barrier for association. Linear free energy relationships suggest a cooperative formation of native interactions, reminiscent of the nucleation-condensation mechanism in protein folding.
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页数:6
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共 46 条
[21]   The Transition State of Coupled Folding and Binding for a Flexible β-Finger [J].
Karlsson, O. Andreas ;
Chi, Celestine N. ;
Engstrom, Ake ;
Jemth, Per .
JOURNAL OF MOLECULAR BIOLOGY, 2012, 417 (03) :253-261
[22]   Electrostatically optimized Ras-binding Ral guanine dissociation stimulator mutants increase the rate of association by stabilizing the encounter complex [J].
Kiel, C ;
Selzer, T ;
Shaul, Y ;
Schreiber, G ;
Herrmann, C .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (25) :9223-9228
[23]   A Folded Excited State of Ligand-Free Nuclear Coactivator Binding Domain (NCBD) Underlies Plasticity in Ligand Recognition [J].
Kjaergaard, Magnus ;
Andersen, Lisbeth ;
Nielsen, Lau Dalby ;
Teilum, Kaare .
BIOCHEMISTRY, 2013, 52 (10) :1686-1693
[24]   Is a Malleable Protein Necessarily Highly Dynamic? The Hydrophobic Core of the Nuclear Coactivator Binding Domain Is Well Ordered [J].
Kjaergaard, Magnus ;
Poulsen, Flemming M. ;
Teilum, Kaare .
BIOPHYSICAL JOURNAL, 2012, 102 (07) :1627-1635
[25]   Temperature-dependent structural changes in intrinsically disordered proteins: Formation of α-helices or loss of polyproline II? [J].
Kjaergaard, Magnus ;
Norholm, Ann-Beth ;
Hendus-Altenburger, Ruth ;
Pedersen, Stine F. ;
Poulsen, Flemming M. ;
Kragelund, Birthe B. .
PROTEIN SCIENCE, 2010, 19 (08) :1555-1564
[26]   Conformational selection in the molten globule state of the nuclear coactivator binding domain of CBP [J].
Kjaergaard, Magnus ;
Teilum, Kaare ;
Poulsen, Flemming M. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2010, 107 (28) :12535-12540
[27]   A Preformed Binding Interface in the Unbound Ensemble of an Intrinsically Disordered Protein: Evidence from Molecular Simulations [J].
Knott, Michael ;
Best, Robert B. .
PLOS COMPUTATIONAL BIOLOGY, 2012, 8 (07)
[28]   Structure of the p53 Transactivation Domain in Complex with the Nuclear Receptor Coactivator Binding Domain of CREB Binding Protein [J].
Lee, Chul Won ;
Martinez-Yamout, Maria A. ;
Dyson, H. Jane ;
Wright, Peter E. .
BIOCHEMISTRY, 2010, 49 (46) :9964-9971
[29]   Intrinsic disorder in transcription factors [J].
Liu, Jiangang ;
Perumal, Narayanan B. ;
Oldfield, Christopher J. ;
Su, Eric W. ;
Uversky, Vladimir N. ;
Dunker, A. Keith .
BIOCHEMISTRY, 2006, 45 (22) :6873-6888
[30]   The study of bimolecular reactions under non-pseudo-first order conditions [J].
Malatesta, F .
BIOPHYSICAL CHEMISTRY, 2005, 116 (03) :251-256