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In Vitro Aggregation Assays Using Hyperphosphorylated Tau Protein
Published on: January 2, 2015
Heterogeneous Dynamics of the Fuzzy Coat of Full-Length Phospho-Mimetic Tau Fibrils
Jia Yi Zhang1, Aurelio J Dregni1, Mei Hong1
1Department of Chemistry, Massachusetts Institute of Technology, 170 Albany Street, Cambridge, Massachusetts 02139, United States.
Abstract:
The β-sheet core of many amyloid proteins in neurodegenerative diseases is surrounded by dynamically disordered segments that contact cellular species. Recent data suggest that this "fuzzy coat" may also regulate the prion-like propagation of amyloid proteins. Here we report the site-specific dynamics of the fuzzy coat of a full-length tau fibril, assembled without anionic cofactors in the presence of four phospho-mimetic glutamate mutations at the PHF1 epitope of Alzheimer's disease tau. The rigid core structure of this 4E tau was recently determined to consist of three β-strands, resembling the structure of three-layered tau aggregates in certain tauopathies. Using solid-state and solution NMR, we measured chemical shifts, peak intensities, and motional amplitudes of the dynamic residues in this 4E tau fibril and investigated the polarization transfer between the dynamic and the rigid segments. These data indicate that the 4E tau fuzzy coat contains three types of dynamic residues: type-1 residues undergo fast large-amplitude motion, type-2 residues undergo fast but intermediate-amplitude motion, and type-3 residues undergo microsecond motion. We estimate the number of residues in each category and propose the likely model for the packing of this fuzzy coat around the rigid core. A truncated tau fibril with the same rigid-core structure as 4E tau shows different fuzzy coat dynamics, indicating that the rigid-core structure is insufficient for defining all the properties of the fibrils. Our fuzzy coat model provides insight into the potential mechanism of prion-like propagation of tau aggregates and suggests how cellular species bind pathological tau aggregates.
Insights
The fuzzy coat of tau fibrils, crucial in neurodegenerative diseases like Alzheimer's, exhibits distinct dynamic motions. Understanding these dynamics is key to unraveling tau prion-like spread and cellular interactions.
Area of Science:
- Neuroscience
- Biochemistry
- Structural Biology
Background:
- Amyloid proteins in neurodegenerative diseases feature a rigid core and a dynamic "fuzzy coat."
- This fuzzy coat may influence the prion-like spread of amyloid aggregates.
Purpose of the Study:
- To investigate the site-specific dynamics of the fuzzy coat in a full-length tau fibril (4E tau) with phospho-mimetic mutations.
- To understand the relationship between the fuzzy coat dynamics and the rigid core structure.
Main Methods:
- Solid-state and solution Nuclear Magnetic Resonance (NMR) spectroscopy.
- Measurement of chemical shifts, peak intensities, and motional amplitudes.
- Investigation of polarization transfer between dynamic and rigid segments.
Main Results:
- The 4E tau fuzzy coat displays three types of residue dynamics: fast large-amplitude, fast intermediate-amplitude, and microsecond motion.
- A model for the fuzzy coat's packing around the rigid core was proposed.
- Truncated tau fibrils with similar rigid cores showed different fuzzy coat dynamics.
Conclusions:
- The rigid core structure alone does not fully determine fibril properties.
- The proposed fuzzy coat model offers insights into tau aggregate propagation and cellular binding mechanisms.
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