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单分子Förster 共振能量转移测量揭示了表皮生长因子受体 C 尾域的动态部分有序结构。

Single-Molecule Förster Resonance Energy Transfer Measurement Reveals the Dynamic Partially Ordered Structure of the Epidermal Growth Factor Receptor C-Tail Domain.

机构信息

Cellular Informatics Laboratory , RIKEN , 2-1 Hirosawa , Wako , Saitama 351-0198 Japan.

出版信息

J Phys Chem B. 2019 Jan 24;123(3):571-581. doi: 10.1021/acs.jpcb.8b10066. Epub 2019 Jan 9.

DOI:10.1021/acs.jpcb.8b10066
PMID:30571124
Abstract

Intrinsically disordered proteins (IDPs) or regions (IDRs) are thought to exhibit unique functionalities without forming ordered structures. However, these molecular mechanisms are not easily elucidated, partly because of the difficultly of measuring structural information. In this study, we applied the alternative laser excitation (ALEX) method and circular dichroism (CD) spectroscopy to investigate the structure of the C-terminal tail (CTT) domain of the human epidermal growth factor receptor (EGFR). The single-molecule distributions of Förster resonance energy transfer (FRET) obtained by ALEX under solution conditions modified by the addition of potassium chloride (KCl), urea, or guanidinium chloride (GdmCl) allowed us to separately examine the influences of charge interactions and secondary structure formation. The CD spectrum analyses indicated the types of included secondary structure. The results suggested that the structure of the CTT is influenced by secondary structure formation, which is a principally antiparallel β-sheet, rather than by charge interactions and that phosphorylation of the major Grb2-binding sites partially denatures that secondary structure. Our findings suggest that the EGFR CTT might regulate ligand binding kinetics by local β-sheet formation or by the disruption associated with phosphorylation states.

摘要

无规蛋白(IDPs)或区域(IDRs)被认为在不形成有序结构的情况下表现出独特的功能。然而,这些分子机制不容易阐明,部分原因是难以测量结构信息。在这项研究中,我们应用了替代激光激发(ALEX)方法和圆二色性(CD)光谱法来研究人类表皮生长因子受体(EGFR)的 C 端尾巴(CTT)域的结构。通过 ALEX 在添加氯化钾(KCl)、尿素或盐酸胍(GdmCl)的溶液条件下获得的Förster 共振能量转移(FRET)的单分子分布,我们可以分别检查电荷相互作用和二级结构形成的影响。CD 光谱分析表明了包含二级结构的类型。结果表明,CTT 的结构受二级结构形成的影响,主要是反平行β-折叠,而不受电荷相互作用的影响,并且 Grb2 结合位点的主要磷酸化部分使该二级结构变性。我们的研究结果表明,EGFR CTT 可能通过局部β-折叠形成或与磷酸化状态相关的破坏来调节配体结合动力学。

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