Aggregation of the neuronal protein
α-synuclein into amyloid
fibrils plays a central role in the development of Parkinson’s
disease. Growth of fibrils can be suppressed by blocking fibril ends
from their interaction with monomeric proteins. In this work, we constructed
inhibitors that bind to the ends of α-synuclein amyloid fibrils
with very high affinity. They are based on synthetic α-synuclein
dimers and interact with fibrils via two monomeric subunits adopting
conformation that efficiently blocks fibril elongation. By tuning
the charge of dimers, we further enhanced the binding affinity and
prepared a construct that inhibits fibril elongation at nanomolar
concentration (IC50 ≈ 20 nM). To the best of our
knowledge, it is the most efficient inhibitor of α-synuclein
fibrillization.
The parathyroid hormone (PTH) regulates the calcium and phosphate level in blood after secretion from parathyroid chief cells. The preand pro-sequences of precursor preproPTH get cleaved during PTH maturation. In secretory granules, PTH forms functional amyloids. Using thioflavin T fibrillation assays, circular dichroism, NMR spectroscopy, and cellular cAMP activation, we show that the pro-sequence prevents premature fibrillation by impairing primary nucleation because of Coulomb repulsion of positively charged residues. Under seeding or high salt conditions or in the presence of heparin at pH 5.5, proPTH fibril formation is delayed, but the monomer release properties are conserved. ProPTH can still activate in cellulo PTH receptor 1 but with impaired potency. These findings give some perspectives on medical applications of PTH in hormone therapy.
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