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June 3, 2026Chemical Biology & Drug Design0 citationsOpen Access

Therapeutic Peptide SS ‐31 Modulates Membrane Binding and Aggregation of α‐Synuclein and Restores Impaired Mitochondrial Function

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ESEwelina StefaniakBCBeiyuan CuiXYXucheng Yan

Key Points

  • This research investigates the effects of SS-31 on α-synuclein's interaction with lipid membranes and mitochondrial impairment.
  • Utilized fluorescence correlation spectroscopy and fluorescence anisotropy to assess membrane binding of α-synuclein.
  • Employed Thioflavin-T assay and transmission electron microscopy to evaluate α-synuclein aggregation.
  • Conducted MTT assay and Seahorse Mito Stress Test to measure cell viability and mitochondrial function.
  • SS-31 displaces α-synuclein from lipid membranes in a dose-dependent manner (p<0.01).
  • Inhibits α-synuclein aggregation and alters fibril morphology, evidenced by transmission electron microscopy results.
  • Restores mitochondrial function and enhances cell viability in α-synuclein oligomer-treated neuroblastoma cells (p<0.05).

Abstract

Membrane binding and aggregation properties of α-synuclein are closely associated with Parkinson's disease and a class of related syndromes named as synucleinopathy. This study explored the potential of SS-31 (Elamipretide), a therapeutic tetrapeptide with alternating cationic and aromatic residues and known properties of mitochondrial inner membrane binding and oxidative stress reduction, in modulating α-synuclein interaction with the lipid membranes and mitigating the impairment of mitochondrial function induced by α-synuclein oligomers. It was demonstrated by both fluorescence correlation spectroscopy and fluorescence anisotropy that SS-31 displaces both wild-type and N-terminal acetylated α-synuclein from negatively charged small unilamellar vesicles in a dose-dependent manner. Thioflavin-T assay and transmission electron microscopy showed that SS-31 inhibits membrane-induced α-synuclein aggregation and alters the morphology of α-synuclein fibrils. Moreover, MTT assay and Seahorse Mito Stress Test indicated that SS-31 enhances cell viability and restores impaired mitochondrial function in α-synuclein oligomer-treated neuroblastoma cells. Finally, confocal imaging revealed that SS-31 hinders cellular uptake of α-synuclein oligomers, possibly by modifying cell membrane electrostatics. These findings suggest that SS-31 potentially attenuates α-synuclein induced mitochondrial impairment via its interaction with the lipid membranes, justifying further development of a peptide-based intervention against α-synuclein mediated pathology.

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Cite This Study

Stefaniak et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc550dee9eb8c0dce6c2ehttps://doi.org/10.1111/cbdd.70332
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