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The truncated retinoid X receptor alpha (tRXRα) is a tumor-specific isoform of the nuclear receptor RXRα, produced through proteolytic cleavage of the N-terminal A/B domain by cathepsin L (Zhou et al., 2010, Cancer Cell). While full-length RXRα primarily functions as a ligand-dependent transcription factor in the nucleus, tRXRα is predominantly cytoplasmic and promotes cell survival by interacting with the p85α subunit of phosphoinositide 3-kinase (PI3K), thereby activating the AKT pathway (Lin et al., 2010, Science Signaling). The tetramer interface of tRXRα has emerged as a critical therapeutic target because it contains a unique pocket that can be occupied by small molecules like sulindac and its analog K-80003 (Zhang et al., 2011, Nature Chemical Biology). Binding at this interface stabilizes a tetrameric configuration of the receptor, which prevents its interaction with PI3K and triggers apoptosis in cancer cells (Chen et al., 2014, Oncotarget). This mechanism provides a basis for developing selective anti-cancer agents that target the non-genomic activities of RXRα without disrupting its essential physiological roles in the nucleus.
Binding to the tetramer interface of truncated RXRα to stabilize an inactive tetrameric state, thereby disrupting its interaction with PI3K and inhibiting the AKT survival pathway.
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