Molecular characterization of a fungal gasdermin-like protein

Asen Daskalov1, Patrick S Mitchell2, Andrew Sandstrom3

  • 1Plant and Microbial Biology Department, University of California, Berkeley, CA 94720; asen.daskalov@u-bordeaux.fr Lglass@berkeley.edu.

Insights

Regulator of cell death-1 (RCD-1) in fungi acts like mammalian gasdermin, triggering programmed cell death. Co-expressed RCD-1 variants initiate cell death, revealing an ancient defense mechanism across kingdoms.

Area of Science:

  • Mycology
  • Cell Biology
  • Evolutionary Biology

Background:

  • Programmed cell death (PCD) in filamentous fungi is crucial for allorecognition and defense against pathogens.
  • The gene regulator of cell death-1 (rcd-1) controls PCD in Neurospora crassa.
  • rcd-1 alleles exhibit high polymorphism, falling into two distinct haplogroups.

Purpose of the Study:

  • To investigate the molecular mechanisms underlying rcd-1-dependent cell death in N. crassa.
  • To explore the evolutionary relationship between fungal RCD-1 and mammalian cell death effectors.

Main Methods:

  • In silico analysis to identify RCD-1 homologs.
  • In vitro binding assays with acidic phospholipids.
  • Reconstitution of the RCD-1 incompatibility system in human 293T cells.

Main Results:

  • RCD-1 is a remote homolog of the N-terminal pore-forming domain of gasdermin.
  • RCD-1 localizes to the cell periphery and binds acidic phospholipids like cardiolipin and phosphatidylserine.
  • Coexpression of incompatible rcd-1 alleles in human cells triggered pyroptotic-like cell death, with RCD-1 oligomers associated with this process.

Conclusions:

  • Fungal RCD-1 functions similarly to mammalian gasdermin in executing cell death.
  • This study reveals an ancient, conserved transkingdom mechanism for cell death execution in organismal defense.