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March 30, 2026The EMBO Journal1 citationsOpen Access

FADD is recruited to activated STING oligomers to initiate caspase-mediated NF-κB activation in Drosophila melanogaster

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KWKasper Grønbjerg WintherCentre National de la Recherche ScientifiqueJSJuliette SchneiderCentre National de la Recherche ScientifiqueGHGabrielle HaasCentre National de la Recherche Scientifique

Key Points

  • The aim is to explore how FADD is recruited by STING to mediate immune responses in Drosophila.
  • Utilized structural modeling to analyze FADD-STING interactions
  • Investigated the role of FADD in mediating Relish activation via Caspase-8
  • Examined how FADD interacts with IMD in Drosophila's immune pathways
  • FADD interacts with activated STING dimers to initiate NF-κB activation
  • Demonstrated the structural dynamics of FADD recruitment in innate immunity
  • Highlighted the distinct functions of FADD within STING and IMD pathways

Abstract

Abstract STING is an evolutionarily conserved key regulator of innate immunity. In the model organism Drosophila melanogaster , STING activates the NF-κB-like transcription factor Relish, initially characterized for its role in the antibacterial IMD pathway. The versatile FADD/Caspase-8 axis is widely used in various immune signaling pathways throughout the animal kingdom, including the IMD pathway. Here, we show that it functions downstream of STING in Drosophila to mediate Relish activation by the Caspase-8 homolog DREDD. We present a detailed structural model illustrating how the adapter protein FADD interacts with two separate STING dimers in the activated oligomerized form of STING, thus providing a molecular explanation for the activation-dependent recruitment of FADD. We further show that FADD interacts with IMD in a structurally distinct but functionally related manner, highlighting how the STING and IMD pathways differentially utilize the adapter protein FADD. Our results illustrate how an ancestral module is incorporated into different innate immune pathways, providing insights into the evolution of host-pathogen interactions.

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Cite This Study

Winther et al. (2026) studied this question.

synapsesocial.com/papers/69c9c5c5f8fdd13afe0bdce1https://doi.org/10.1038/s44318-026-00761-9
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