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首页> 外文期刊>Developmental cell >Dietary Lipids Modulate Notch Signaling and Influence Adult Intestinal Development and Metabolism in Drosophila
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Dietary Lipids Modulate Notch Signaling and Influence Adult Intestinal Development and Metabolism in Drosophila

机译:膳食脂质调节Notch信号传导并影响果蝇中的成人肠道发育和代谢

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摘要

Tissue homeostasis involves a complex balance of developmental signals and environmental cues that dictate stem cell function. We found that dietary lipids control enteroendocrine cell production from Drosophila posterior midgut stem cells. Dietary cholesterol influences new intestinal cell differentiation in an Hr96-dependent manner by altering the level and duration of Notch signaling. Exogenous lipids modulate Delta ligand and Notch extracellular domain stability and alter their trafficking in endosomal vesicles. Lipid-modulated Notch signaling occurs in other nutrient-dependent tissues, suggesting that Delta trafficking in many cells is sensitive to cellular sterol levels. These diet-mediated alterations in young animals contribute to a metabolic program that persists after the diet changes. A low-sterol diet also slows the proliferation of enteroendocrine tumors initiated by Notch pathway disruption. Thus, a specific dietary nutrient can modify a key intercellular signaling pathway to shift stem cell differentiation and cause lasting changes in tissue structure and physiology.
机译:组织稳态涉及一种复杂的发育信号和环境提示的平衡,并决定干细胞功能。我们发现膳食脂质对照来自果蝇后肠细胞干细胞的肠道内分泌细胞产生。膳食胆固醇通过改变Notch信号传导的水平和持续时间来影响新的肠细胞分化以HR96依赖性方式。外源性脂质调节Delta配体和缺口细胞外结构域稳定性,并改变其贩运内体囊泡。在其他营养素依赖性组织中发生脂质调制的凹口信号传导,表明许多细胞中的达达趋发对细胞甾醇水平敏感。这些饮食介导的年轻动物的改变有助于在饮食变化后持续的代谢程序。低甾醇饮食也减缓了陷波途径破坏引发的肠道内分泌肿瘤的增殖。因此,特定的膳食营养素可以改变关键的细胞间信号传导途径以改变干细胞分化并导致组织结构和生理学的持久变化。

著录项

  • 来源
    《Developmental cell》 |2018年第1期|共19页
  • 作者单位

    Carnegie Inst Sci Howard Hughes Med Inst Dept Embryol Res Labs 3520 San Martin Dr Baltimore;

    Carnegie Inst Sci Howard Hughes Med Inst Dept Embryol Res Labs 3520 San Martin Dr Baltimore;

    Carnegie Inst Sci Howard Hughes Med Inst Dept Embryol Res Labs 3520 San Martin Dr Baltimore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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