Scientific article
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English

Human GBP1 Differentially Targets Salmonella and Toxoplasma to License Recognition of Microbial Ligands and Caspase-Mediated Death

Published inCell reports, vol. 32, no. 6, 108008
Publication date2020-08-11
Abstract

Interferon-inducible guanylate-binding proteins (GBPs) promote cell-intrinsic defense through host cell death. GBPs target pathogens and pathogen-containing vacuoles and promote membrane disruption for release of microbial molecules that activate inflammasomes. GBP1 mediates pyroptosis or atypical apoptosis of Salmonella Typhimurium (STm)- or Toxoplasma gondii (Tg)- infected human macrophages, respectively. The pathogen-proximal detection-mechanisms of GBP1 remain poorly understood, as humans lack functional immunity-related GTPases (IRGs) that assist murine Gbps. Here, we establish that GBP1 promotes the lysis of Tg-containing vacuoles and parasite plasma membranes, releasing Tg-DNA. In contrast, we show GBP1 targets cytosolic STm and recruits caspase-4 to the bacterial surface for its activation by lipopolysaccharide (LPS), but does not contribute to bacterial vacuole escape. Caspase-1 cleaves and inactivates GBP1, and a cleavage-deficient GBP1D192E mutant increases caspase-4-driven pyroptosis due to the absence of feedback inhibition. Our studies elucidate microbe-specific roles of GBP1 in infection detection and its triggering of the assembly of divergent caspase signaling platforms.

Keywords
  • GBP1
  • Salmonella enterica Typhimurium
  • Toxoplasma gondii
  • Apoptosis
  • Caspases
  • Inflammasomes
  • Pyroptosis
Affiliation entities Not a UNIGE publication
Funding
  • Medical Research Council [108246/Z/15/Z]
  • Cancer Research UK [FC001076]
  • Wellcome Trust [091664/B/10/Z]
  • Japan Agency for Medical Research and Development [17K15677]
  • The Francis Crick Institute [10076]
Citation (ISO format)
FISCH, Daniel et al. Human GBP1 Differentially Targets Salmonella and Toxoplasma to License Recognition of Microbial Ligands and Caspase-Mediated Death. In: Cell reports, 2020, vol. 32, n° 6, p. 108008. doi: 10.1016/j.celrep.2020.108008
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Article (Published version)
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Journal ISSN2211-1247
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