Department of Pathology and Laboratory Medicine, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, 19104, USA.
University of Pikeville-Kentucky School of Osteopathic Medicine, Pikeville, KY, 41501, USA.
Nat Commun. 2020 May 22;11(1):2591. doi: 10.1038/s41467-020-16379-2.
The intestine is a highly dynamic environment that requires tight control of the various inputs to maintain homeostasis and allow for proper responses to injury. It was recently found that the stem cell niche and epithelium is regenerated after injury by de-differentiated adult cells, through a process that gives rise to Sca1+ fetal-like cells and is driven by a transient population of Clu revival stem cells (revSCs). However, the molecular mechanisms that regulate this dynamic process have not been fully defined. Here we show that TNFAIP8 (also known as TIPE0) is a regulator of intestinal homeostasis that is vital for proper regeneration. TIPE0 functions through inhibiting basal Akt activation by the commensal microbiota via modulating membrane phospholipid abundance. Loss of TIPE0 in mice results in injury-resistant enterocytes, that are hyperproliferative, yet have regenerative deficits and are shifted towards a de-differentiated state. Tipe0 enterocytes show basal induction of the Clu regenerative program and a fetal gene expression signature marked by Sca1, but upon injury are unable to generate Sca-1/Clu revSCs and could not regenerate the epithelium. This work demonstrates the role of TIPE0 in regulating the dynamic signaling that determines the injury response and enables intestinal epithelial cell regenerative plasticity.
肠道是一个高度动态的环境,需要严格控制各种输入,以维持内环境稳定并允许对损伤做出适当的反应。最近发现,干细胞龛和上皮在损伤后通过去分化的成体细胞再生,这个过程产生了 Sca1+ 胎儿样细胞,并由短暂的 Clu 恢复干细胞 (revSCs) 群体驱动。然而,调节这种动态过程的分子机制尚未完全定义。在这里,我们表明 TNFAIP8(也称为 TIPE0)是调节肠道内稳态的调节剂,对正常再生至关重要。TIPE0 通过调节膜磷酯的丰度来抑制共生菌群对基础 Akt 的激活来发挥作用。在小鼠中敲除 TIPE0 会导致损伤抗性肠细胞,这些细胞过度增殖,但再生能力不足,并且向去分化状态转变。Tipe0 肠细胞表现出基础诱导的 Clu 再生程序和以 Sca1 为标志的胎儿基因表达特征,但在损伤后无法产生 Sca-1/Clu revSCs,也无法再生上皮。这项工作表明 TIPE0 在调节决定损伤反应并使肠道上皮细胞再生可塑性的动态信号中发挥作用。