An interactive cellular ecosystem blocks epithelial transformation in naked mole-rat
Behm, M.; Baeza-Centurion, P.; Busa, V. F.; Penso-Dolfin, L.; Botey, F. J.; Delaunay, S.; Hirschmuller, N.; Koch, M.-L.; Del Prete, S.; Sohn, D.; Reifenberg, C.; Schopp, M.; Lammers, F.; Sole-Boldo, L.; Dutton, J.; Wagner, R. E.; Blanco, S.; Begall, S.; Khaled, W.; Smith, E. S. J.; Odom, D. T.; Frye, M.; Goncalves, A.
Show abstract
Long-lived species suppress cancer despite accumulating somatic mutations throughout life, but how this is achieved in renewing tissues remains unclear. Here, we show that naked mole-rat skin uncouples high cellular turnover from cancer risk through coordinated epithelial and stromal mechanisms that constrain clonal outgrowth and suppress tumor-promoting inflammation. Despite elevated epidermal proliferation and mutational burden, naked mole-rat skin maintains tissue integrity through an expanded pool of early committed progenitor (hybrid) cells and replication-coupled genome maintenance pathways. Under chronic carcinogenic stress, undifferentiated basal cells replenish the hybrid progenitor pool. This dilutes initiated clones and permits only limited selective expansion of rare cancer gene-mutant clones. Depletion of the hybrid compartment shifts this protective state toward clonal expansion and inflammatory activation. These expanding clones are further constrained by a highly tumor-suppressive stromal microenvironment, driven by fibroblasts that adopt a metabolically restricted, non-inflammatory program. Together, our data uncover a multi-layered tumor-suppressive strategy that couples turnover-driven regeneration with an anti-permissive stromal niche to prevent malignant progression under mutagenic stress.
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