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Updated: Oct 27, 2025

Purification and Aggregation of the Amyloid Precursor Protein Intracellular Domain
Published on: August 28, 2012
Purification and characterization of an amyloidogenic repeat domain from the functional amyloid Pmel17
Dexter N Dean1, Jennifer C Lee1
1Laboratory of Protein Conformation and Dynamics, Biochemistry and Biophysics Center, National Heart, Lung, and Blood Institute, National Institutes of Health, United States.
Abstract:
The pre-melanosomal protein (Pmel17) is a human functional amyloid that supports melanin biosynthesis within melanocytes. This occurs in the melanosome, a membrane-bound organelle with an acidic intraluminal pH. The repeat region of Pmel17 (RPT, residues 315-444) has been previously shown to form amyloid aggregates under acidic melanosomal conditions, but not under neutral cytosolic conditions, when expressed and purified using a C-terminal hexa-histidine tag (RPT-His). Given the importance of protonation states in RPT-His aggregation, we questioned whether the histidine tag influenced the pH-dependent behavior. In this report, we generated a tagless RPT by inserting a tobacco etch virus (TEV) protease recognition sequence (ENLYGQ(G/S)) immediately upstream of a native glycine residue at position 312 in Pmel17. After purification of the fusion construct using a histidine tag, cleavage with TEV protease generated a fully native RPT (nRPT) spanning resides 312-444. We characterized the aggregation of nRPT, which formed amyloid fibrils under acidic conditions (pH ≤ 6) but not at neutral pH. Characterizing the morphologies of nRPT aggregates using transmission electron microscopy revealed a pH-dependent maturation from short, curved structures at pH 4 to paired, rod-like fibrils at pH 6. This was accompanied by a secondary structural transition from mixed random coil/β-sheet at pH 4 to canonical β-sheet at pH 6. We also show that pre-formed nRPT fibrils undergo disaggregation upon dilution into pH 7 buffer. More broadly, this strategy can be utilized to generate native amyloidogenic domains from larger proteins by utilizing intrinsic N-terminal glycine or serine residues.
Insights
The Pmel17 protein
Area of Science:
- Biochemistry
- Cell Biology
- Structural Biology
Background:
- Pmel17 is a human functional amyloid essential for melanin production.
- Melanosomes, where Pmel17 functions, have an acidic internal pH.
- Previous studies showed Pmel17 aggregation was pH-dependent, but a histidine tag's influence was unknown.
Purpose of the Study:
- To investigate the pH-dependent aggregation of native Pmel17 repeat region (nRPT).
- To determine if a histidine tag influenced Pmel17's pH-dependent aggregation behavior.
- To develop a method for generating native amyloidogenic protein domains.
Main Methods:
- Generated tagless nRPT using TEV protease cleavage of a fusion construct.
- Characterized nRPT aggregation and morphology at different pH values using TEM.
- Analyzed secondary structural changes using spectroscopy.
- Investigated fibril disaggregation in neutral pH buffer.
Main Results:
- Native Pmel17 repeat region (nRPT) forms amyloid fibrils at acidic pH (≤6) but not neutral pH.
- Aggregate morphology matures from curved structures at pH 4 to rod-like fibrils at pH 6.
- Secondary structure transitions from mixed random coil/β-sheet to canonical β-sheet with increasing pH.
- Pre-formed nRPT fibrils disaggregate when transferred to neutral pH.
Conclusions:
- The histidine tag did not influence Pmel17's pH-dependent aggregation.
- nRPT aggregation is strictly pH-dependent, mirroring melanosomal conditions.
- A novel method using TEV protease enables generation of native amyloidogenic domains.
- This strategy is broadly applicable for studying other amyloidogenic protein regions.
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