Multiple binding sites on the pyrin domain of ASC protein allow self-association and interaction with NLRP3 protein

Parimala R Vajjhala1, Ruth E Mirams, Justine M Hill

  • 1School of Chemistry and Molecular Biosciences, The University of Queensland, Brisbane, Queensland 4072, Australia.

Insights

The ASC PYD protein has two binding sites enabling self-association and interaction with NLRP3, crucial for inflammasome assembly and innate immunity. This clarifies NLRP3 inflammasome activation mechanisms.

Area of Science:

  • Immunology
  • Molecular Biology
  • Structural Biology

Background:

  • The NOD-like receptor family, including NLRP3, is vital for innate immunity, responding to pathogens and stress.
  • NLRP3 inflammasome activation leads to caspase-1 processing and pro-inflammatory cytokine release, implicated in diseases like Alzheimer's.
  • The precise molecular mechanisms of NLRP3 inflammasome assembly remain unclear.

Purpose of the Study:

  • To elucidate the molecular details of NLRP3 inflammasome assembly.
  • To characterize the binding sites and interaction modes of the ASC PYD domain.
  • To understand how ASC self-association contributes to inflammasome activation.

Main Methods:

  • Protein interaction analysis of the ASC PYD domain.
  • Structural modeling of ASC PYD homodimers and complexes.
  • Mutational analysis to identify critical residues for binding and self-association.

Main Results:

  • ASC PYD possesses two distinct binding sites facilitating self-association and interaction with NLRP3 and POP1.
  • A type I interaction mode, involving asymmetric binding, drives ASC PYD homodimerization and filament formation.
  • Residues critical for ASC PYD interaction are conserved in NLRP3 and POP1 PYDs, suggesting conserved binding modes.
  • ASC PYD can simultaneously self-associate and bind NLRP3, supporting a model of ASC-mediated inflammasome clustering and activation.

Conclusions:

  • ASC PYD's dual binding sites and type I interaction mode are fundamental to its self-association and interaction with NLRP3.
  • This mechanism explains how ASC bridges NLRP3 and procaspase-1, promoting inflammasome activation.
  • Understanding these molecular details offers insights into NLRP3 inflammasome-associated diseases and potential therapeutic targets.

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