Diverse Intestinal Injuries Drive Heterogeneous Transcriptional Responses and Limited Reactivation of Developmental Gene Programs in Human Enteroids

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Abstract

The murine intestine reactivates developmental gene programs following various forms of damage in vivo and in vitro ; however, injury response mechanisms used by the human intestine remain unclear. Using adult human small intestinal epithelium-only organoids (‘enteroids’), we characterized the early response to eight injury conditions and injury-associated signaling pathways (P53, PGE2, YAP, TGFβ) to interrogate whether human developmental genes were activated. P53 activation and decreased proliferation were common features across treatments. Most (7/8) injuries did not activate human development genes. Butyrate is a notable exception given it inhibited P53 and promoted a human developmental transcriptional signature. We observe that P53 induces a human adult gene signature while TGFβ and YAP promote a developmental signature. Together our data characterizes various transcriptional responses to injury, supports injury-associated signaling pathways as regulators of human adult and developmental genes, and highlights how our data can be mined to predict injury-specific interventions for epithelial protection.

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