Antimicrobial α-defensins as multi-target inhibitors against amyloid formation and microbial infection

Yanxian Zhang1, Yonglan Liu1, Yijing Tang1

  • 1Department of Chemical, Biomolecular, and Corrosion Engineering, The University of Akron Ohio USA zhengj@uakron.edu.

Chemical Science
|July 19, 2021
PubMed

Insights

Antimicrobial peptides, like human neutrophil peptide-1 and rabbit neutrophil peptide-NP-3A, can inhibit amyloid aggregation and microbial infections. These peptides show multi-target functions, offering new therapeutic potential for amyloid diseases.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Drug Discovery

Background:

  • Amyloid aggregation and microbial infections are risk factors for diseases like Alzheimer's, type II diabetes, Parkinson's, and medullary thyroid carcinoma.
  • Current single-target drugs are insufficient for treating multifactorial amyloid diseases effectively.

Purpose of the Study:

  • To propose and validate a novel "anti-amyloid and antimicrobial hypothesis" for discovering new therapeutic agents.
  • To identify host-defense antimicrobial peptides with dual activity against amyloid aggregation and microbial infection.

Main Methods:

  • Investigated two α-defensins (HNP-1 and NP-3A) for their ability to inhibit aggregation of amyloid-β, hIAPP, and hCT.
  • Assessed the peptides' effects on amyloid-induced cytotoxicity and their antimicrobial activity.
  • Performed structural analysis to understand the mechanism of amyloid inhibition.

Main Results:

  • HNP-1 and NP-3A demonstrated sequence-independent inhibition of amyloid aggregation and misfolding at sub-stoichiometric concentrations.
  • These peptides reduced amyloid-induced cell toxicity while retaining antimicrobial efficacy.
  • Structural analysis revealed β-structure interactions mediate the anti-amyloid function of α-defensins.

Conclusions:

  • Antimicrobial peptides with β-structures can simultaneously inhibit microbial infection and amyloid aggregation.
  • This discovery expands therapeutic strategies for amyloid diseases by repurposing antimicrobial peptides as multi-target inhibitors.

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