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Conformational landscape of an amyloid intra-cellular domain and Landau-Ginzburg-Wilson paradigm in protein dynamics

机译:淀粉样蛋白胞内域和Landau-Ginzburg-Wilson范式在蛋白质动力学中的构象景观

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The Landau-Ginzburg-Wilson paradigm is proposed as a framework, to investigate the conformational landscape of intrinsically unstructured proteins. A universal Ca-trace Landau free energy is deduced from general symmetry considerations, with the ensuing all-atom structure modeled using publicly available reconstruction programs Pulchra and Scwrl. As an example, the conformational stability of an amyloid precursor protein intra-cellular domain (AICD) is inspected; the reference conformation is the crystallographic structure with code 3DXC in Protein Data Bank (PDB) that describes a heterodimer of AICD and a nuclear multi-domain adaptor protein Fe65. Those conformations of AICD that correspond to local or near-local minima of the Landau free energy are identified. For this, the response of the original 3DXC conformation to variations in the ambient temperature is investigated, using the Glauber algorithm. The conclusion is that in isolation the AICD conformation in 3DXC must be unstable. A family of degenerate conformations that minimise the Landau free energy is identified, and it is proposed that the native state of an isolated AICD is a superposition of these conformations. The results are fully in line with the presumed intrinsically unstructured character of isolated AICD and should provide a basis for a systematic analysis of AICD structure in future NMR experiments. Published by AIP Publishing.
机译:提出了Landau-Ginzburg-Wilson范式作为框架,以研究固有非结构化蛋白质的构象态势。从普遍的对称性考虑中推导出普遍的Ca迹线Landau自由能,随后使用可公开获得的重建程序Pulchra和Scwrl对所有原子结构进行建模。例如,检查淀粉样蛋白前体蛋白细胞内结构域(AICD)的构象稳定性。参考构象是蛋白质数据库(PDB)中代码为3DXC的晶体结构,该结构描述了AICD的异二聚体和核多域衔接子蛋白Fe65。识别出那些与朗道自由能的局部或近局部最小值相对应的AICD构象。为此,使用Glauber算法研究了原始3DXC构型对环境温度变化的响应。结论是,孤立地,3DXC中的AICD构象必须是不稳定的。确定了最小化朗道自由能的简并构象家族,并且提出了孤立的AICD的天然状态是这些构象的叠加。结果完全符合分离出的AICD固有的非结构化特征,并应为未来NMR实验中系统分析AICD结构提供基础。由AIP Publishing发布。

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