Cryo-EM structures of perforin-2 in isolation and assembled on a membrane suggest a mechanism for pore formation

EMBO J. 2022 Dec 1;41(23):e111857. doi: 10.15252/embj.2022111857. Epub 2022 Oct 17.

Abstract

Perforin-2 (PFN2, MPEG1) is a key pore-forming protein in mammalian innate immunity restricting intracellular bacteria proliferation. It forms a membrane-bound pre-pore complex that converts to a pore-forming structure upon acidification; but its mechanism of conformational transition has been debated. Here we used cryo-electron microscopy, tomography and subtomogram averaging to determine structures of PFN2 in pre-pore and pore conformations in isolation and bound to liposomes. In isolation and upon acidification, the pre-assembled complete pre-pore rings convert to pores in both flat ring and twisted conformations. On membranes, in situ assembled PFN2 pre-pores display various degrees of completeness; whereas PFN2 pores are mainly incomplete arc structures that follow the same subunit packing arrangements as found in isolation. Both assemblies on membranes use their P2 β-hairpin for binding to the lipid membrane surface. Overall, these structural snapshots suggest a molecular mechanism for PFN2 pre-pore to pore transition on a targeted membrane, potentially using the twisted pore as an intermediate or alternative state to the flat conformation, with the capacity to cause bilayer distortion during membrane insertion.

Keywords: cryo-EM; cryo-electron tomography; perforin-2; pore-forming protein; subtomogram averaging.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Cell Membrane / metabolism
  • Cryoelectron Microscopy
  • Liposomes* / metabolism
  • Mammals*
  • Membranes
  • Perforin / analysis
  • Perforin / chemistry
  • Perforin / metabolism

Substances

  • Perforin
  • Liposomes

Associated data

  • PDB/6SB3
  • PDB/6U2W
  • PDB/6H03
  • PDB/6H04
  • PDB/6SB5
  • PDB/8A1D
  • PDB/8A1S