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本文引用的文献

1
GROMACS 4:  Algorithms for Highly Efficient, Load-Balanced, and Scalable Molecular Simulation.GROMACS 4:高效、负载均衡和可扩展的分子模拟算法。
J Chem Theory Comput. 2008 Mar;4(3):435-47. doi: 10.1021/ct700301q.
2
NMR spectroscopic studies of intrinsically disordered proteins at near-physiological conditions.在近生理条件下对内在无序蛋白质的核磁共振光谱研究。
Angew Chem Int Ed Engl. 2013 Nov 4;52(45):11808-12. doi: 10.1002/anie.201304272. Epub 2013 Sep 20.
3
Structures of the excited states of phospholamban and shifts in their populations upon phosphorylation.肌浆球蛋白结合蛋白 C 的激发态结构及其磷酸化时的构象变化。
Biochemistry. 2013 Sep 24;52(38):6684-94. doi: 10.1021/bi400517b. Epub 2013 Sep 11.
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Signaling through dynamic linkers as revealed by PKA.通过 PKA 揭示的通过动态连接子的信号转导
Proc Natl Acad Sci U S A. 2013 Aug 27;110(35):14231-6. doi: 10.1073/pnas.1312644110. Epub 2013 Aug 14.
5
Characterization of the interdomain motions in hen lysozyme using residual dipolar couplings as replica-averaged structural restraints in molecular dynamics simulations.利用残基偶极耦合作为分子动力学模拟中的复制品平均结构约束来表征鸡溶菌酶的结构域间运动。
Biochemistry. 2013 Sep 17;52(37):6480-6. doi: 10.1021/bi4007513. Epub 2013 Sep 9.
6
Impact of hydrostatic pressure on an intrinsically disordered protein: a high-pressure NMR study of α-synuclein.静水压对无规卷曲蛋白的影响:α-突触核蛋白的高压 NMR 研究。
Chembiochem. 2013 Sep 23;14(14):1754-61. doi: 10.1002/cbic.201300244. Epub 2013 Jun 28.
7
Probing the transient dark state of substrate binding to GroEL by relaxation-based solution NMR.通过基于弛豫的溶液 NMR 探测 GroEL 与底物结合的瞬态暗态。
Proc Natl Acad Sci U S A. 2013 Jul 9;110(28):11361-6. doi: 10.1073/pnas.1305715110. Epub 2013 Jun 24.
8
Modulation of allostery by protein intrinsic disorder.蛋白质固有无序对变构的调节。
Nature. 2013 Jun 20;498(7454):390-4. doi: 10.1038/nature12294.
9
Allosteric inhibition through suppression of transient conformational states.变构抑制通过抑制瞬态构象状态。
Nat Chem Biol. 2013 Jul;9(7):462-5. doi: 10.1038/nchembio.1250. Epub 2013 May 5.
10
A decade and a half of protein intrinsic disorder: biology still waits for physics.蛋白无序的十五年:生物学仍在等待物理学。
Protein Sci. 2013 Jun;22(6):693-724. doi: 10.1002/pro.2261. Epub 2013 Apr 29.

对一种内在无序蛋白质的构象识别。

Conformational recognition of an intrinsically disordered protein.

作者信息

Krieger James M, Fusco Giuliana, Lewitzky Marc, Simister Philip C, Marchant Jan, Camilloni Carlo, Feller Stephan M, De Simone Alfonso

机构信息

Department of Life Sciences, Imperial College London, London, UK.

Department of Chemistry, University of Cambridge, Cambridge, UK.

出版信息

Biophys J. 2014 Apr 15;106(8):1771-9. doi: 10.1016/j.bpj.2014.03.004.

DOI:10.1016/j.bpj.2014.03.004
PMID:24739176
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4008819/
Abstract

There is a growing interest in understanding the properties of intrinsically disordered proteins (IDPs); however, the characterization of these states remains an open challenge. IDPs appear to have functional roles that diverge from those of folded proteins and revolve around their ability to act as hubs for protein-protein interactions. To gain a better understanding of the modes of binding of IDPs, we combined statistical mechanics, calorimetry, and NMR spectroscopy to investigate the recognition and binding of a fragment from the disordered protein Gab2 by the growth factor receptor-bound protein 2 (Grb2), a key interaction for normal cell signaling and cancer development. Structural ensemble refinement by NMR chemical shifts, thermodynamics measurements, and analysis of point mutations indicated that the population of preexisting bound conformations in the free-state ensemble of Gab2 is an essential determinant for recognition and binding by Grb2. A key role was found for transient polyproline II (PPII) structures and extended conformations. Our findings are likely to have very general implications for the biological behavior of IDPs in light of the evidence that a large fraction of these proteins possess a specific propensity to form PPII and to adopt conformations that are more extended than the typical random-coil states.

摘要

人们对了解内在无序蛋白质(IDP)的特性越来越感兴趣;然而,对这些状态的表征仍然是一个悬而未决的挑战。IDP似乎具有与折叠蛋白不同的功能作用,并且围绕其作为蛋白质 - 蛋白质相互作用枢纽的能力展开。为了更好地理解IDP的结合模式,我们结合统计力学、量热法和核磁共振光谱,研究了生长因子受体结合蛋白2(Grb2)对无序蛋白Gab2片段的识别和结合,这是正常细胞信号传导和癌症发展中的关键相互作用。通过核磁共振化学位移进行的结构系综优化、热力学测量以及点突变分析表明,Gab2自由状态系综中预先存在的结合构象群体是Grb2识别和结合的重要决定因素。发现了瞬时多聚脯氨酸II(PPII)结构和延伸构象的关键作用。鉴于有证据表明这些蛋白质中的很大一部分具有形成PPII和采用比典型随机卷曲状态更延伸构象的特定倾向,我们的发现可能对IDP的生物学行为具有非常普遍的意义。