4.8 Article

The Molecular Basis for Perforin Oligomerization and Transmembrane Pore Assembly

期刊

IMMUNITY
卷 30, 期 5, 页码 684-695

出版社

CELL PRESS
DOI: 10.1016/j.immuni.2009.03.016

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资金

  1. National Health and Medical Research Council (NHMRC) of Australia
  2. NHMRC
  3. Australian Research Council
  4. Monash University Faculty of Medicine Strategic Grant Scheme Early Career Researcher award
  5. Cancer Council Victoria, Australia
  6. Biotechnology and Biological Sciences Research Council [BB/D008573/1] Funding Source: researchfish
  7. BBSRC [BB/D008573/1] Funding Source: UKRI

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Perforin, a pore-forming protein secreted by cytotoxic lymphocytes, is indispensable for destroying virus-infected cells and for maintaining immune homeostasis. Perforin polymerizes into transmembrane channels that inflict osmotic stress and facilitate target cell uptake of proapoptotic granzymes. Despite this, the mechanism through which perforin monomers self-associate remains unknown. Our current study establishes the molecular basis for perforin oligomerization and pore assembly. We show that after calcium-dependent membrane binding, direct ionic attraction between the opposite faces of adjacent perforin monomers was necessary for pore formation. By using mutagenesis, we identified the opposing charges on residues Arg213 (positive) and Glu343 (negative) to be critical for intermolecular interaction. Specifically, disrupting this interaction had no effect on perforin synthesis, folding, or trafficking in the killer cell, but caused a marked kinetic defect of oligomerization at the target cell membrane, severely disrupting lysis and granzyme B-induced apoptosis. Our study provides important insights into perforin's mechanism of action.

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