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Hypoxia-induced XBP1s-MYDGF axis suppresses ferroptosis through UBQLN1-mediated stabilization of LCN2 in gastric cancer

Oncogene, Published online: 07 April 2026; doi:10.1038/s41388-026-03760-6

Hypoxia-induced XBP1s-MYDGF axis suppresses ferroptosis through UBQLN1-mediated stabilization of LCN2 in gastric cancer
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Metabolite-gated vascular contractility switch: OXGR1 activation mechanism enables agonist therapy for rosacea erythema

Xiao et al. identify Ξ±-KG as a rosacea-associated metabolite that activates the OXGR1-Gq-MYL9 axis in the vascular smooth muscle cells to boost contractility and suppress pathological vasodilation underlying erythema. Cryo-EM reveals a bipartite-acid pocket of OXGR1 that enables structure-guided development of A-1, a selective agonist that alleviates erythema in rosacea-like models.
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Efficient amyloid-Ξ² degradation in Alzheimer’s disease using SPYTACs

SPYTAC is a synthetic peptide-programmed targeted protein degradation platform harnessing LRP1 to drive lysosomal degradation of extracellular amyloid-Ξ² in the brain and periphery. In 5Γ—FAD mice, SPYTAC treatment efficiently degrades amyloid-Ξ², preserves neurons, and improves cognition with reduced neuroinflammation and microhemorrhage when compared with antibody therapy.
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