Developmental factors drive the compartmentalised and discontinuous maturation of the small intestinal epithelium during the early postnatal period
Schöneich, J.; Dupont, A.; Schlösser, S.; Schmitz, M. A.; Richter, I.; Gubbi, N. M. K. P.; Cheng, M.; Maie, T.; Jäverfelt, S.; Imdahl, F.; Toussaint, C.; Saliba, A.-E.; Kuppe, C.; Pelaseyed, T.; Costa, I. G.; Hornef, M. W.
Show abstract
The temporal, spatial and cellular diversity of the small intestinal epithelium during the postnatal period, a critical time window that accompanies the transition from placental energy supply to enteral feeding, the establishment of the enteric microbiota and postnatal immune maturation, has not been systematically investigated. Here, we used laser capture microdissection and bulk RNA-Seq, proteomics, and single cell RNA-Seq to analyse the total, organ site, crypt- and villus-specific intestinal epithelium of specific pathogen-free, germ-free and Salmonella-infected mice during the postnatal period. We identified key temporal and organ-site specific expression patterns that revealed a weak effect of the microbiota but strong influence of developmental regulators during early life. We also determined age-dependent signalling pathway and transcription factor activity and characterised age- and cell type-specific developmental trajectories revealing a distinct compartmentalised maturation process along the proximal-to-distal length and crypt-villus axis and a discontinuous appearance of goblet/Paneth cell and absorptive enterocyte transcriptional profiles. Finally, we described the cell type-specific response to neonatal enteric infection. Taken together, our findings identify the epithelium as an integral element in the maturation of postnatal mucosal tissues and in the establishment of host-microbe homeostasis.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Postnatal intestinal epithelial maturation by LSD1 controls the small intestinal immune cell composition independently from the microbiota 97%
- The Heterochromatin protein 1 is a master regulator in RNA splicing precision deficient in ulcerative colitis 97%
- Multiomic analysis reveals cellular and epigenetic plasticity in intestinal pouches of ulcerative colitis patients 96%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Antibiotics and the developing intestinal microbiome, metabolome and inflammatory environment: a randomized trial of preterm infants 94%
- MAF1 is a Chronic Repressor of RNA Polymerase III Transcription in the Mouse 92%
- Transcriptomes of Electrophysiologically Recorded Dbx1-derived Inspiratory Neurons of the preBötzinger Complex in Neonatal Mice 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.