Small molecule ensembles reshape amyloid aggregation landscapes
Nair, R. V.; Tran, B. N.; Parikh, A. N.; Foreman, M. R.
Show abstract
Amyloid-{beta}42 assemblies form a dynamic network of oligomers and fibrils, with fibrillar species acting as reservoirs that maintain equilibrium among intermediates. Perturbing a single species shifts the oligomer-fibril balance, highlighting the challenge of selectively targeting toxic species while maintaining the dynamic equilibrium of the amyloid network. Here, we show that the small molecule EPPS (4-(2-hydroxyethyl)-1-piperazine-propanesulfonic acid) fine tunes this network through cooperative, concentration-dependent disaggregation. At optimal concentrations, EPPS efficiently shifts the equilibrium away from the fibrillar structures via multisite, allosteric interactions. At higher concentrations, EPPS self-assembles into supramolecular clusters, depleting free molecules and allowing partially disaggregated amyloid intermediates to reassemble. Notably, at elevated concentrations, interactions transition from molecule-to-molecule to higher-order ensemble-to-ensemble engagement, where EPPS clusters and amyloid fibrils mutually reshape each others dynamics. Molecular crowding, modeled with polyethylene glycol, further restricts EPPS access to fibrillar surfaces, modulating activity. These findings reveal that small molecule dynamics, including cooperative binding, selfassembly, and environment-dependent accessibility, critically govern amyloid network control, providing a mechanistic blueprint for rational design of next-generation amyloid-targeting therapeutics.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- α-Helical peptidic scaffolds to target α-synuclein pathogenic species with high affinity and selectivity. 95%
- Mapping the sequence specificity of heterotypic amyloid interactions enables the identification of aggregation modifiers 95%
- Structural defects in amyloid-β fibrils drive secondary nucleation 95%
Similar papers in this journal
- Direct observation of secondary nucleation in huntingtin amyloid formation by High-Speed Atomic Force Microscopy 95%
- Maturation and conformational switching of a de novo designed phase-separating polypeptide 94%
- Faster amylin aggregation on fibrillar collagen hastens diabetic progression through β cell death and loss of function 93%
Similar papers in this journal
- Resolving the nanoscale structure of β-sheet assemblies using single-molecule orientation-localization microscopy 93%
- Pore engineering as a general strategy to improve protein-based enzyme nanoreactor performance 93%
- Regulating biocondensates within synthetic cells via segregative phase separation 93%
Similar papers in this journal
- Unraveling the Complexity of Amyloid Polymorphism Using Gold Nanoparticles and Cryo-EM 94%
- Heterotypic electrostatic interactions control complex phase separation of tau and prion into multiphasic condensates and co-aggregates 94%
- Dissecting neurofilament tail sequence-phosphorylation-structure relationships with multicomponent reconstituted protein brushes 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.