Dose-dependent binding behavior of anthraquinone derivative purpurin interacting with tau-derived peptide protofibril

Xiaoxiao Wu1, Lili Zhu1,2, Gang Wang1

  • 1Key Laboratory of Exercise and Health Sciences (Ministry of Education), Shanghai Frontiers Science Research Base of Exercise and Metabolic Health, and School of Exercise and Health, Shanghai University of Sport, 399 Changhai Road, Shanghai 200438, China. qianzhenyu@sus.edu.cn.

Insights

Purpurin disrupts the PHF6 fibril nucleus in Alzheimer's disease models. This study reveals purpurin's dose-dependent binding and inhibitory effects on tau aggregation, offering insights for drug development.

Area of Science:

  • Biochemistry
  • Neuroscience
  • Computational Biology

Background:

  • Alzheimer's disease (AD) is characterized by tau tangles and amyloid-β plaques.
  • The PHF6 hexapeptide motif in tau is crucial for aggregation; inhibiting it may prevent AD.
  • The dose-dependent inhibitory mechanisms of small molecules against tau aggregation are not fully understood.

Purpose of the Study:

  • To investigate the dose-induced effects of purpurin on the structural stability of the PHF6 fibrillar nucleus.
  • To elucidate the molecular mechanisms of purpurin's interaction with PHF6 protofibrils.

Main Methods:

  • Microsecond all-atom molecular dynamics simulations in explicit water.
  • Analysis of PHF6 protofibril stability across different oligomer sizes.
  • Investigation of purpurin binding modes and interactions at varying purpurin/peptide ratios.

Main Results:

  • The PHF6 octamer is identified as the minimal stable nucleus for fibril formation.
  • Purpurin binding to the octamer exhibits dynamic coupling states and transitions.
  • Increasing purpurin concentration leads to self-aggregation rather than protein binding, with a power-law relationship observed.
  • Purpurin preferentially binds to Tyr residues via aromatic stacking, with significant disruption at a 1:2 molar ratio.

Conclusions:

  • Purpurin effectively disrupts the PHF6 protofibril octamer, with its binding and disruptive effects plateauing at a 1:2 molar ratio.
  • The study provides a detailed dynamic and interaction profile of purpurin binding to PHF6.
  • Findings enhance understanding of dose-induced inhibitory mechanisms for potential Alzheimer's disease therapeutics.