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PTBP1 controls intestinal epithelial regeneration through post-transcriptional regulation of gene expression

Ullas V. Chembazhi, Wesley Tung, Hyo‐Jeong Hwang, Yuexi Wang, Aryan Lalwani, Ka Lam Nguyen, Sushant Bangru, Danielle Yee, Kristy Chin, Jing Yang, Auinash Kalsotra, Wenyan Mei

2023Nucleic Acids Research19 citationsDOIOpen Access PDF

Abstract

The intestinal epithelial regeneration is driven by intestinal stem cells under homeostatic conditions. Differentiated intestinal epithelial cells, such as Paneth cells, are capable of acquiring multipotency and contributing to regeneration upon the loss of intestinal stem cells. Paneth cells also support intestinal stem cell survival and regeneration. We report here that depletion of an RNA-binding protein named polypyrimidine tract binding protein 1 (PTBP1) in mouse intestinal epithelial cells causes intestinal stem cell death and epithelial regeneration failure. Mechanistically, we show that PTBP1 inhibits neuronal-like splicing programs in intestinal crypt cells, which is critical for maintaining intestinal stem cell stemness. This function is achieved at least in part through promoting the non-productive splicing of its paralog PTBP2. Moreover, PTBP1 inhibits the expression of an AKT inhibitor PHLDA3 in Paneth cells and permits AKT activation, which presumably maintains Paneth cell plasticity and function in supporting intestinal stem cell niche. We show that PTBP1 directly binds to a CU-rich region in the 3' UTR of Phlda3, which we demonstrate to be critical for downregulating the mRNA and protein levels of Phlda3. Our results thus reveal the multifaceted in vivo regulation of intestinal epithelial regeneration by PTBP1 at the post-transcriptional level.

Topics & Concepts

BiologyGene expressionGeneRegulation of gene expressionRegeneration (biology)GeneticsCell biologyTranscriptional regulationPost-transcriptional regulationMolecular biologyKruppel-like factors researchRNA modifications and cancerRNA Research and Splicing
PTBP1 controls intestinal epithelial regeneration through post-transcriptional regulation of gene expression | Litcius