Age-associated thymic involution is a major driver of immunosenescence, yet the cellular and spatial mechanisms coordinating age-related thymic remodeling remain incompletely understood. Combining single-cell transcriptomics, chromatin accessibility profiling, and spatial transcriptomics, we generated a spatially resolved multi-omic atlas of the aging mouse thymus. We show that thymic aging is not simply a process of epithelial loss, but a spatial reorganization of the stroma into new microenvironments, including age-associated epithelial states, a fibroblast-supported epithelial progenitor niche, and tertiary lymphoid structures. This remodeling displaces niches supporting positive and negative thymocyte selection and coincides with an intrinsic decline in cortical thymic epithelial cell function. Ligand-receptor mapping identifies medullary fibroblasts as a signaling hub sustaining epithelial progenitors and promoting tertiary lymphoid structure neogenesis, linking these hallmarks of thymic aging. Together, our findings reframe thymic involution as spatial stromal reorganization that links stromal remodeling to impaired thymopoiesis, central tolerance, and immune aging.
Andreas Tarcevski, Fatima Dhalla, Joshua W. Moore et al.· bioRxiv· 0 citations
It is shown that disruption of chromatin organization by degron-mediated CTCF and/or WAPL depletion promotes totipotent-like conversion through the DPPA2/DUX axis, accompanied by changes in chromatin accessibility and nucleolar integrity.
Grace Carey, Maria Vega-Sendino, Desiree Tillo et al.· EMBO Journal· 2 citations
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