p53 terminates the regenerative fetal-like state after colitis-associated injury.

Hartl, Kimberly; Bayram, Şafak; Wetzel, Alexandra; Harnack, Christine; Lin, Manqiang; Fischer, Anne-Sophie; Liu, Lichao; Beccaceci, Giulia et al. · Sci Adv · 2024

basic_science · Level V

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Abstract

Cells that lack p53 signaling frequently occur in ulcerative colitis (UC) and are considered early drivers in UC-associated colorectal cancer (CRC). Epithelial injury during colitis is associated with transient stem cell reprogramming from the adult, homeostatic to a "fetal-like" regenerative state. Here, we use murine and organoid-based models to study the role of <i>Trp53</i> during epithelial reprogramming. We find that p53 signaling is silent and dispensable during homeostasis but strongly up-regulated in the epithelium upon DSS-induced colitis. While in WT cells this causes termination of the regenerative state, crypts that lack <i>Trp53</i> remain locked in the highly proliferative, regenerative state long-term. The regenerative state in WT cells requires high Wnt signaling to maintain elevated levels of glycolysis. Instead, <i>Trp53</i> deficiency enables Wnt-independent glycolysis due to overexpression of rate-limiting enzyme PKM2. Our study reveals the context-dependent relevance of p53 signaling specifically in the injury-induced regenerative state, explaining the high abundance of clones lacking p53 signaling in UC and UC-associated CRC.

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