Ceramides Increase Fatty Acid Utilization in Intestinal Progenitors to Enhance Stemness and Increase Tumor Risk

鞘脂 生物 干细胞 细胞生物学 祖细胞 癌症 内分泌学 内科学 癌症研究 生物化学 医学 遗传学
作者
Ying Liu,Bhagirath Chaurasia,Mohammed Mahidur Rahman,Vincent Kaddai,J. Alan Maschek,Jordan A. Berg,Joseph L. Wilkerson,Ziad Mahmassani,James E. Cox,Peng Wei,Peter J. Meikle,Donald L. Atkinson,Liping Wang,Annelise M Poss,Mary C. Playdon,Trevor S. Tippetts,Esraa Mousa,Kesara Nittayaboon,Pon Velayutham Anandh Babu,Micah J. Drummond,Hans Clevers,James A. Shayman,Yoshio Hirabayashi,William L. Holland,Jared Rutter,Bruce A. Edgar,Scott A. Summers
出处
期刊:Gastroenterology [Elsevier]
卷期号:165 (5): 1136-1150 被引量:4
标识
DOI:10.1053/j.gastro.2023.07.017
摘要

Cancers of the alimentary tract, including esophageal adenocarcinomas, colorectal cancers, and cancers of the gastric cardia, are common comorbidities of obesity. Prolonged, excessive delivery of macronutrients to the cells lining the gut can increase one's risk for these cancers by inducing imbalances in the rate of intestinal stem cell proliferation vs differentiation, which can produce polyps and other aberrant growths. We investigated whether ceramides, which are sphingolipids that serve as a signal of nutritional excess, alter stem cell behaviors to influence cancer risk.We profiled sphingolipids and sphingolipid-synthesizing enzymes in human adenomas and tumors. Thereafter, we manipulated expression of sphingolipid-producing enzymes, including serine palmitoyltransferase (SPT), in intestinal progenitors of mice, cultured organoids, and Drosophila to discern whether sphingolipids altered stem cell proliferation and metabolism.SPT, which diverts dietary fatty acids and amino acids into the biosynthetic pathway that produces ceramides and other sphingolipids, is a critical modulator of intestinal stem cell homeostasis. SPT and other enzymes in the sphingolipid biosynthesis pathway are up-regulated in human intestinal adenomas. They produce ceramides, which serve as prostemness signals that stimulate peroxisome-proliferator activated receptor-α and induce fatty acid binding protein-1. These actions lead to increased lipid utilization and enhanced proliferation of intestinal progenitors.Ceramides serve as critical links between dietary macronutrients, epithelial regeneration, and cancer risk.
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