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阿尔茨海默病相关蛋白tau相分离热点的残基特异性鉴定。

Residue-specific identification of phase separation hot spots of Alzheimer's-related protein tau.

作者信息

Ambadipudi Susmitha, Reddy Jithender G, Biernat Jacek, Mandelkow Eckhard, Zweckstetter Markus

机构信息

Deutsches Zentrum für Neurodegenerative Erkrankungen (DZNE) , Von-Siebold-Str. 3a , 37075 Göttingen , Germany . Email:

Max-Planck-Institut für Biophysikalische Chemie , Am Fassberg 11 , 37077 Göttingen , Germany.

出版信息

Chem Sci. 2019 May 22;10(26):6503-6507. doi: 10.1039/c9sc00531e. eCollection 2019 Jul 14.

Abstract

Liquid-liquid phase separation (LLPS) of proteins enables the formation of non-membrane-bound organelles in cells and is associated with cancer and neurodegeneration. Little is known however about the structure and dynamics of proteins in LLPS conditions, because of the polymorphic nature of liquid-like protein droplets. Using carbon-detected NMR experiments we here show that the conversion of the aggregation-prone repeat region of the Alzheimer's-related protein tau from the dispersed monomeric state to phase-separated liquid-like droplets involves tau's aggregation-prone hexapeptides and regulatory KXGS motifs. Droplet dissolution in presence of 1,6-hexanediol revealed that chemical shift perturbations in the hexapeptide motifs are temperature driven, while those in KXGS motifs report on phase separation. Residue-specific secondary structure analysis further indicated that tau's repeat region exists in extended conformation in the dispersed state and attains transient β-hairpin propensity upon LLPS. Taken together our work shows that NMR spectroscopy can provide high-resolution insights into LLPS-induced changes in intrinsically disordered proteins.

摘要

蛋白质的液-液相分离(LLPS)能够在细胞中形成无膜细胞器,并且与癌症和神经退行性疾病相关。然而,由于类液体蛋白质液滴的多态性,对于处于LLPS条件下蛋白质的结构和动力学了解甚少。我们在此利用碳检测核磁共振实验表明,与阿尔茨海默病相关的蛋白质tau的易聚集重复区域从分散的单体状态转变为相分离的类液体液滴,涉及tau的易聚集六肽和调控性KXGS基序。在1,6 -己二醇存在下液滴溶解表明,六肽基序中的化学位移扰动受温度驱动,而KXGS基序中的化学位移扰动反映相分离情况。残基特异性二级结构分析进一步表明,tau的重复区域在分散状态下以伸展构象存在,在LLPS时具有短暂的β -发夹倾向。综上所述,我们的工作表明核磁共振光谱能够为LLPS诱导的内在无序蛋白质变化提供高分辨率的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76dd/6610569/b0c764638bb6/c9sc00531e-f1.jpg

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