首页> 美国卫生研究院文献>other >The Epigenetic Bivalency of Core Pancreatic β-Cell Transcription Factor Genes within Mouse Pluripotent Embryonic Stem Cells Is Not Affected by Knockdown of the Polycomb Repressive Complex 2 SUZ12
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The Epigenetic Bivalency of Core Pancreatic β-Cell Transcription Factor Genes within Mouse Pluripotent Embryonic Stem Cells Is Not Affected by Knockdown of the Polycomb Repressive Complex 2 SUZ12

机译:小鼠多能胚胎干细胞内的核心胰岛β细胞转录因子基因的表观亲和力不受敲击的聚梳抑制复合物2SUZ12的影响。

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摘要

This study assesses changes in activator and repressor modifications to histones associated with the core transcription factor genes most highly upregulated or downregulated in pancreatic β-cells relative to expression in an embryonic stem cell line. Epigenetic analysis of the Oct4, Utf1, Nanog and Sox2 (pluripotency) and Pdx1, Nkx6.1, Nkx2.2 and MafA (pancreatic β-cells) transcription factor genes in embryonic stem cells and a β-cell line (MIN6) showed the pluripotency genes were enriched for active (histone 3 trimethylated at lysine 4 and histone 3 acetylated at lysine 9) and depleted of repressor modifications (histone 3 trimethylated at lysine 27 and histone 3 trimethylated at lysine 9) around the transcription start site in mouse embryonic stem cells (D3), and this was reversed in MIN6 cells. The β-cell transcription factors were bivalently enriched for activating (histone 3 trimethylated at lysine 4) and repressor (histone 3 trimethylated at lysine 27) modifications in embryonic stem cells but were monovalent for the activator modification (histone 3 trimethylated at lysine 4) in the β-cells. The polycomb repressor complex 2 acts as a histone 3 lysine 27 methylase and an essential component of this complex, SUZ12, was enriched at the β-cell transcription factors in embryonic stem cells and was reduced MIN6. Knock-down of SUZ12 in embryonic stem cells, however, did not reduce the level of histone 3 trimethylated at lysine 27 at β-cell transcription factor loci or break the transcriptional repression of these genes in embryonic stem cells. This study shows the reduction in the total SUZ12 level was not a sufficient cause of the resolution of the epigenetic bivalency of β-cell transcription factors in embryonic stem cells.
机译:这项研究评估了相对于胚胎干细胞系表达而言,胰腺β细胞中上调或下调程度最高的与核心转录因子基因相关的组蛋白的激活物和阻遏物修饰的变化。对胚胎干细胞和β细胞系(MIN6)中的Oct4,Utf1,Nanog和Sox2(多能性)以及Pdx1,Nkx6.1,Nkx2.2和MafA(胰腺β细胞)转录因子基因进行表观遗传分析。多能性基因在小鼠胚胎干的转录起始位点附近具有丰富的活性(在赖氨酸4处三甲基化的组氨酸3在赖氨酸9处被乙酰化)和在阻遏物修饰(赖氨酸27处的三甲基化组氨酸和在赖氨酸9处三甲基化的组蛋白3)富集了抑制子修饰。 (D3)细胞,而在MIN6细胞中则相反。 β-细胞转录因子在胚胎干细胞中的激活修饰(组蛋白3在赖氨酸4处三甲基化)和阻遏物(组蛋白3在赖氨酸27处三甲基化)修饰,而激活剂修饰(组蛋白3在赖氨酸4处三甲基化修饰)单价富集。 β细胞。聚梳阻遏物复合物2充当组蛋白3赖氨酸27甲基化酶,该复合物的主要成分SUZ12在胚胎干细胞的β细胞转录因子处富集,并降低了MIN6。然而,在胚胎干细胞中敲低SUZ12并不会降低在β细胞转录因子基因座上赖氨酸27处三甲基化的组蛋白3的水平,也不会破坏这些基因在胚胎干细胞中的转录抑制。这项研究表明,总SUZ12水平的降低不足以解决胚胎干细胞中β细胞转录因子表观遗传双价的问题。

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