Rovenko Bohdana M, Moisio Kari, Biehler Cornelia, Girych Mykhailo, Hallasaari Atte, Deniz Onur, Bluhm Sarah, Viitanen Arto, Kokki Krista, Fabris Gaia, Yang Yi, Cracan Valentin, Miguel-Aliaga Irene, Hietakangas Ville
Faculty of Biological and Environmental Sciences, University of Helsinki, Helsinki 00790, Finland.
Institute of Biotechnology, University of Helsinki, Helsinki 00790, Finland.
bioRxiv. 2025 Jul 2:2025.06.30.662346. doi: 10.1101/2025.06.30.662346.
Enteroendocrine (EE) cells monitor the intestinal nutrient composition and consequently control organismal physiology through hormonal signaling. In addition to the immediate effects on hormone secretion, nutrients influence EE cell abundance by affecting the determination and maintenance of cell fate. EE cells are known to import and respond to dietary sugars, but how the sugar-induced changes in the intracellular metabolic state are sensed to control the immediate and long-term responses of EE cells, remains poorly understood. We report that the NADH binding transcriptional cofactor C-terminal binding protein (CtBP) acts at the interface between nutrient sensing and fate regulation of larval EE cells, thus controlling organismal energy metabolism and survival on a high sugar diet. CtBP dimerization in EE cells is regulated through the redox balance of nicotinamide cofactors controlled by glycolysis and pentose phosphate pathway, allowing EE cells sense their internal metabolic state in response to sugar catabolism. CtBP interacts with the EE cell fate determining transcription factor Prospero through a conserved binding motif and binds to genomic targets controlling EE cell fate and size, such as components of Notch and insulin/mTOR pathways. Collectively, our findings uncover a modality where changes in intracellular redox state serve as an instructive signal to control EE cell function to globally control organismal homeostasis.
肠内分泌(EE)细胞监测肠道营养成分,并通过激素信号传导控制机体生理功能。除了对激素分泌的即时影响外,营养物质还通过影响细胞命运的决定和维持来影响EE细胞的丰度。已知EE细胞会摄取并对膳食糖作出反应,但糖诱导的细胞内代谢状态变化是如何被感知以控制EE细胞的即时和长期反应,目前仍知之甚少。我们报告称,NADH结合转录辅因子C末端结合蛋白(CtBP)在幼虫EE细胞的营养感知和命运调控之间起作用,从而控制机体能量代谢以及在高糖饮食下的生存。EE细胞中的CtBP二聚化通过糖酵解和磷酸戊糖途径控制的烟酰胺辅因子的氧化还原平衡来调节,使EE细胞能够感知其内部代谢状态以响应糖分解代谢。CtBP通过一个保守的结合基序与EE细胞命运决定转录因子Prospero相互作用,并与控制EE细胞命运和大小的基因组靶点结合,如Notch和胰岛素/mTOR途径的成分。总的来说,我们的研究结果揭示了一种模式,即细胞内氧化还原状态的变化作为一种指导性信号来控制EE细胞功能,从而全局控制机体稳态。