Intra-cluster receptor density (IRD): A molecular switch for TNFR1 clusters' signaling.

Jana, Subhamoy; Roy, Priyanka; Das, Jibitesh; Bera, Basab Bijayee; Biswas, Parijat; Nanda, Nandana; Sinha, Bidisha; Sinha, Deepak Kumar · Sci Adv · 2026

basic_science · Level V

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Abstract

Tumor necrosis factor receptor 1 (TNFR1) signaling regulates cell fate in inflammation, immune responses, and tumorigenesis. While TNF-α-mediated TNFR1 pathways are well known, the role of receptor clustering remains unclear. Utilizing homo-FRET using fluorescence anisotropy, we show that intra-cluster receptor density (IRD) governs TNFR1 signaling outcomes. Soluble TNF-α (sTNF-α) increases IRD at cluster cores but decreases it at rims via receptor reorganization. Reducing IRD through membrane tension, zafirlukast, actin depolymerization, or cholesterol depletion suppresses sTNF-α signaling, whereas increasing IRD by lowering membrane tension or exposing cells in a 3D gel-like microenvironment triggers ligand-independent activation. These findings reveal IRD as a key regulator of receptor signaling, with potential relevance across related receptor families and innovative strategies in modulating TNFR1 signaling.

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