Zagoren Eleanor, Dias Nicolas, Santos Anderson K, Smith Zachary D, Ameen Nadia A, Sumigray Kaelyn
Department of Genetics, Yale School of Medicine, New Haven, CT 06510, USA.
Yale Stem Cell Center, Yale School of Medicine, New Haven, CT 06510, USA.
Development. 2025 Jun 1;152(11). doi: 10.1242/dev.204277. Epub 2025 Jun 3.
The small intestine is well known for its nutrient-absorbing enterocytes; yet equally crucial for homeostasis is a diverse set of secretory cells, all presumed to originate from the same intestinal stem cell. Despite their major roles in intestinal function and health, understanding how the full spectrum of secretory cell types arises remains a longstanding challenge, largely due to their comparative rarity. Here, we investigate the specification of a rare population of small intestinal epithelial cells found in rats and humans but not mice: CFTR high expressers (CHEs). Using pseudotime trajectory analysis of single-cell RNA-sequencing data from rat jejunum, we provide evidence that CHEs are specified along the secretory lineage and appear to employ a second wave of Notch-based signaling to distinguish themselves from other secretory cells. We validate the transcription factors directing these cells from crypt progenitors and demonstrate that Notch signaling is necessary to induce CHE fate in vivo and in vitro. Our findings suggest that Notch reactivation along the secretory lineage specifies CHEs, which may help regulate luminal pH and have direct relevance in cystic fibrosis pathophysiology.
小肠以其吸收营养的肠上皮细胞而闻名;然而,对于体内平衡同样至关重要的是一组多样化的分泌细胞,所有这些细胞都被认为起源于同一个肠道干细胞。尽管它们在肠道功能和健康中发挥着重要作用,但了解分泌细胞类型的全貌是如何产生的仍然是一个长期存在的挑战,这主要是因为它们相对稀少。在这里,我们研究了在大鼠和人类而非小鼠中发现的一种罕见的小肠上皮细胞群体的特化:CFTR高表达细胞(CHEs)。通过对大鼠空肠单细胞RNA测序数据进行伪时间轨迹分析,我们提供了证据表明CHEs沿着分泌谱系特化,并且似乎利用基于Notch的第二波信号来将自己与其他分泌细胞区分开来。我们验证了指导这些细胞从隐窝祖细胞分化的转录因子,并证明Notch信号在体内和体外诱导CHE命运是必需的。我们的研究结果表明,沿着分泌谱系Notch的重新激活决定了CHEs的特化,这可能有助于调节管腔pH值,并且与囊性纤维化的病理生理学直接相关。