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首页> 外文期刊>Biochemical and Biophysical Research Communications >Effect of essential amino acids on enteroids: Methionine deprivation suppresses proliferation and affects differentiation in enteroid stem cells
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Effect of essential amino acids on enteroids: Methionine deprivation suppresses proliferation and affects differentiation in enteroid stem cells

机译:基础氨基酸对肠外的影响:甲硫氨酸剥夺抑制增殖并影响肠外干细胞中的分化

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We investigated the effects of essential amino acids on intestinal stem cell proliferation and differentiation using murine small intestinal organoids (enteroids) from the jejunum. By selectively removing individual essential amino acids from culture medium, we found that 24 h of methionine (Met) deprivation markedly suppressed cell proliferation in enteroids. This effect was rescued when enteroids cultured in Met deprivation media for 12 h were transferred to complete medium, suggesting that Met plays an important role in enteroid cell proliferation. In addition, mRNA levels of the stem cell marker leucine-rich repeat-containing G protein-coupled receptor 5 (Lgr5) decreased in enteroids grown in Met deprivation conditions. Consistent with this observation, Met deprivation also attenuated Lgr5-EGFP fluorescence intensity in enteroids. In contrast, Met deprivation enhanced mRNA levels of the enter-oendocrine cell marker chromogranin A (ChgA) and markers of K cells, enterochromaffin cells, goblet cells, and Paneth cells. Immunofluorescence experiments demonstrated that Met deprivation led to an increase in the number of ChgA-positive cells. These results suggest that Met deprivation suppresses stem cell proliferation, thereby promoting differentiation. In conclusion, Met is an important nutrient in the maintenance of intestinal stem cells and Met deprivation potentially affects cell differentiation. (C) 2017 Elsevier Inc. All rights reserved.
机译:我们研究了必需氨基酸对肠道干细胞增殖和不同来自JEJUNUM的肠道细胞体(ENTEODS)的分化的影响。通过选择性地从培养基中去除各种必需的氨基酸,我们发现24小时的蛋氨酸(MET)剥夺明显抑制细胞增殖。当在普遍剥夺培养基中培养12小时的培养培养时,这种效果被救出到完全培养基中,表明遇到了在肠外细胞增殖中发挥着重要作用。另外,在满足剥夺条件下生长的食指中,干细胞标记物富含富含富含富含含少的重复的G蛋白偶联受体5(LGR5)的mRNA水平降低。与该观察结果一致,MET剥夺也减毒了肠外的LGR5-EGFP荧光强度。相反,满足剥夺增强的End-Oencine细胞标志物染色体A(CHGA)的mRNA水平和K细胞,Enterochromaffin细胞,杯状细胞和甘蔗细胞的标记。显着的免疫荧光实验认为,符合污染导致CHGA阳性细胞数量的增加。这些结果表明,MET剥夺抑制干细胞增殖,从而促进分化。总之,满足是肠道干细胞维持的重要营养素,达到剥夺潜在地影响细胞分化。 (c)2017年Elsevier Inc.保留所有权利。

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