首页> 美国卫生研究院文献>Stem Cells and Development >Glucosamine-Induced OGT Activation Mediates Glucose Production Through Cleaved Notch1 and FoxO1 Which Coordinately Contributed to the Regulation of Maintenance of Self-Renewal in Mouse Embryonic Stem Cells
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Glucosamine-Induced OGT Activation Mediates Glucose Production Through Cleaved Notch1 and FoxO1 Which Coordinately Contributed to the Regulation of Maintenance of Self-Renewal in Mouse Embryonic Stem Cells

机译:葡萄糖胺诱导的OGT激活介导通过切缺的Notch1和FoxO1的葡萄糖生产它们协同作用于小鼠胚胎干细胞自我更新维持的调节。

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摘要

We aimed to study the relationship between glucosamine and FoxO1/Notch in gluconeogenesis and maintenance of mouse embryonic stem cell (mESC) self-renewal. Glucosamine (GlcN) increased glucose production and gluconeogenic enzyme (G6Pase and PEPCK) expression. GlcN also increased the percentage of cells in S phase, number of cells, and the protein expression of cell cycle regulatory proteins that were blocked by 3-mercaptopicolinic acid (gluconeogenesis inhibitor) or glucose transporter (GLUT) 1 neutralizing antibody. GlcN increased the O-GlcNAc transferase (OGT)–dependent protein O-GlcNAc level. Moreover, inhibition of OGT (by ST045849) decreased glucose production. GlcN enhanced the expression of OGT-dependent O-GlcNAcylated Notch1 and then increased the translocation of cleaved Notch1 to the nucleus. Moreover, GlcN stimulated the translocation of O-GlcNAcylated FoxO1 to the nucleus. GlcN increased the binding between cleaved Notch1 and FoxO1 with CSL, a transcription factor, which was blocked by L-685,458 (γ-secretase inhibitor) or ST045849, respectively. Simultaneous blockage of cleaved Notch1 and FoxO1 also decreased the expression of G6Pase and PEPCK more significantly than that by inhibition of cleaved Notch1 alone or FoxO1 alone. In addition, GlcN maintained the undifferentiation status while depletion of Notch1 and FoxO1 for 3 days decreased Oct4 and SSEA-1 expression and alkaline phosphatase activity or increased the mRNA expression of GATA4, Tbx5, Cdx2, and Fgf5. In conclusion, GlcN-induced OGT activation mediated glucose production through cleaved Notch1 and FoxO1, which contributed to the regulation of maintenance of self-renewal in mESCs.
机译:我们旨在研究葡萄糖胺和FoxO1 / Notch在糖异生和维持小鼠胚胎干细胞(mESC)自我更新中的关系。葡萄糖胺(GlcN)增加了葡萄糖的产生和糖异生酶(G6Pase和PEPCK)的表达。 GlcN还增加了被3-巯基亚油酸(糖异生抑制剂)或葡萄糖转运蛋白(GLUT)1中和抗体阻断的S期细胞百分比,细胞数量以及细胞周期调节蛋白的蛋白表达。 GlcN增加了O-GlcNAc转移酶(OGT)依赖性蛋白O-GlcNAc的水平。此外,对OGT的抑制(通过ST045849)降低了葡萄糖的产生。 GlcN增强OGT依赖性O-GlcNAcylated Notch1的表达,然后增加裂解的Notch1向核的转运。此外,GlcN刺激O-GlcNAcylated FoxO1易位至核。 GlcN增加了裂解的Notch1和FoxO1与CSL的结合,CSL是一种转录因子,分别被L-685,458(γ-分泌酶抑制剂)或ST045849阻断。同时裂解的Notch1和FoxO1的阻断也比单独抑制裂解的Notch1或FoxO1的抑制显着降低了G6Pase和PEPCK的表达。此外,GlcN保持未分化状态,而耗竭Notch1和FoxO1 3天降低了Oct4和SSEA-1表达和碱性磷酸酶活性,或者增加了GATA4,Tbx5,Cdx2和Fgf5的mRNA表达。总之,GlcN诱导的OGT激活通过Notch1和FoxO1的裂解介导了葡萄糖的产生,这有助于调节mESCs自我更新的维持。

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