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本文引用的文献

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Triple resonance ¹⁵Ν NMR relaxation experiments for studies of intrinsically disordered proteins.用于研究内在无序蛋白质的三重共振¹⁵N NMR弛豫实验。
J Biomol NMR. 2017 Nov;69(3):133-146. doi: 10.1007/s10858-017-0138-1. Epub 2017 Oct 25.
2
Quantitative mapping of microtubule-associated protein 2c (MAP2c) phosphorylation and regulatory protein 14-3-3ζ-binding sites reveals key differences between MAP2c and its homolog Tau.微管相关蛋白2c(MAP2c)磷酸化和调节蛋白14-3-3ζ结合位点的定量图谱揭示了MAP2c与其同源物Tau之间的关键差异。
J Biol Chem. 2017 Apr 21;292(16):6715-6727. doi: 10.1074/jbc.M116.771097. Epub 2017 Mar 3.
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AKAP18:PKA-RIIα structure reveals crucial anchor points for recognition of regulatory subunits of PKA.AKAP18:PKA-RIIα结构揭示了识别蛋白激酶A调节亚基的关键锚定位点。
Biochem J. 2016 Jul 1;473(13):1881-94. doi: 10.1042/BCJ20160242. Epub 2016 Apr 21.
4
An evolutionary roadmap to the microtubule-associated protein MAP Tau.微管相关蛋白MAP Tau的进化路线图。
BMC Genomics. 2016 Mar 31;17:264. doi: 10.1186/s12864-016-2590-9.
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Tau in physiology and pathology.tau 在生理学和病理学中的作用。
Nat Rev Neurosci. 2016 Jan;17(1):5-21. doi: 10.1038/nrn.2015.1. Epub 2015 Dec 3.
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Identification of key amino acids responsible for the distinct aggregation properties of microtubule-associated protein 2 and tau.确定负责微管相关蛋白2和tau独特聚集特性的关键氨基酸。
J Neurochem. 2015 Oct;135(1):19-26. doi: 10.1111/jnc.13228. Epub 2015 Aug 26.
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Toward optimal-resolution NMR of intrinsically disordered proteins.迈向内在无序蛋白质的最佳分辨率核磁共振研究。
J Magn Reson. 2014 Apr;241:41-52. doi: 10.1016/j.jmr.2013.12.008.
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Spectral density mapping protocols for analysis of molecular motions in disordered proteins.用于分析无序蛋白质中分子运动的光谱密度映射协议。
J Biomol NMR. 2014 Mar;58(3):193-207. doi: 10.1007/s10858-014-9816-4. Epub 2014 Feb 11.
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Predictive atomic resolution descriptions of intrinsically disordered hTau40 and α-synuclein in solution from NMR and small angle scattering.从 NMR 和小角散射预测溶液中固有无序的 hTau40 和 α-突触核蛋白的原子分辨率。
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10
Efficient protocol for backbone and side-chain assignments of large, intrinsically disordered proteins: transient secondary structure analysis of 49.2 kDa microtubule associated protein 2c.高效的大、无序蛋白质主链和侧链分配方案:49.2 kDa 微管相关蛋白 2c 的瞬态二级结构分析。
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微管相关蛋白 2c 的功能特异性结合区域呈现出不同的构象和动态。

Functionally specific binding regions of microtubule-associated protein 2c exhibit distinct conformations and dynamics.

机构信息

From Masaryk University, Central European Institute of Technology, Kamenice 5, 625 00 Brno, Czech Republic.

Masaryk University, Faculty of Science, National Centre for Biomolecular Research, Kamenice 5, 625 00 Brno, Czech Republic.

出版信息

J Biol Chem. 2018 Aug 24;293(34):13297-13309. doi: 10.1074/jbc.RA118.001769. Epub 2018 Jun 20.

DOI:10.1074/jbc.RA118.001769
PMID:29925592
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6109934/
Abstract

Microtubule-associated protein 2c (MAP2c) is a 49-kDa intrinsically disordered protein regulating the dynamics of microtubules in developing neurons. MAP2c differs from its sequence homologue Tau in the pattern and kinetics of phosphorylation by cAMP-dependent protein kinase (PKA). Moreover, the mechanisms through which MAP2c interacts with its binding partners and the conformational changes and dynamics associated with these interactions remain unclear. Here, we used NMR relaxation and paramagnetic relaxation enhancement techniques to determine the dynamics and long-range interactions within MAP2c. The relaxation rates revealed large differences in flexibility of individual regions of MAP2c, with the lowest flexibility observed in the known and proposed binding sites. Quantitative conformational analyses of chemical shifts, small-angle X-ray scattering (SAXS), and paramagnetic relaxation enhancement measurements disclosed that MAP2c regions interacting with important protein partners, including Fyn tyrosine kinase, plectin, and PKA, adopt specific conformations. High populations of polyproline II and α-helices were found in Fyn- and plectin-binding sites of MAP2c, respectively. The region binding the regulatory subunit of PKA consists of two helical motifs bridged by a more extended conformation. Of note, although MAP2c and Tau did not differ substantially in their conformations in regions of high sequence identity, we found that they differ significantly in long-range interactions, dynamics, and local conformation motifs in their N-terminal domains. These results highlight that the N-terminal regions of MAP2c provide important specificity to its regulatory roles and indicate a close relationship between MAP2c's biological functions and conformational behavior.

摘要

微管相关蛋白 2c(MAP2c)是一种 49kDa 的无序蛋白,它调节发育神经元中微管的动态。MAP2c 在由 cAMP 依赖性蛋白激酶(PKA)磷酸化的模式和动力学上与序列同源物 Tau 不同。此外,MAP2c 与其结合伴侣相互作用的机制以及与这些相互作用相关的构象变化和动力学仍不清楚。在这里,我们使用 NMR 弛豫和顺磁弛豫增强技术来确定 MAP2c 内的动力学和长程相互作用。弛豫率揭示了 MAP2c 各个区域的柔韧性存在很大差异,在已知和提议的结合位点观察到最低的柔韧性。化学位移的定量构象分析、小角度 X 射线散射(SAXS)和顺磁弛豫增强测量表明,与重要蛋白质伴侣相互作用的 MAP2c 区域,包括 Fyn 酪氨酸激酶、网蛋白和 PKA,采用特定的构象。在 MAP2c 的 Fyn 和网蛋白结合位点中分别发现了高比例的多脯氨酸 II 和α-螺旋。与 PKA 调节亚基结合的区域由两个螺旋基序通过更扩展的构象桥接而成。值得注意的是,尽管 MAP2c 和 Tau 在高序列同源区域的构象上没有显著差异,但我们发现它们在长程相互作用、动力学和 N 端结构域的局部构象模式上存在显著差异。这些结果强调了 MAP2c 的 N 端区域为其调节作用提供了重要的特异性,并表明 MAP2c 的生物学功能和构象行为之间存在密切关系。