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.

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.