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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >Epigenetic regulation of planarian stem cells by the SET1/MLL family of histone methyltransferases
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Epigenetic regulation of planarian stem cells by the SET1/MLL family of histone methyltransferases

机译:SET1 / MLL组蛋白甲基转移酶家族对表层干细胞的表观遗传调控

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Chromatin regulation is a fundamental mechanism underlying stem cell pluripotency, differentiation, and the establishment of cell type-specific gene expression profiles. To examine the role of chromatin regulation in stem cells in vivo, we study regeneration in the freshwater planarian Schmidtea mediterranea. These animals possess a high concentration of pluripotent stem cells, which are capable of restoring any damaged or lost tissues after injury or amputation. Here, we identify the S. mediterranea homologs of the SET1/MLL family of histone methyltransferases and COMPASS and COMPASS -like complex proteins and investigate their role in stem cell function during regeneration. We identified six S. mediterranea homologs of the SET1/MLL family (set1, mll1/2, trr-1, trr-2, mll5-1 and mll5-2), characterized their patterns of expression in the animal, and examined their function by RNAi. All members of this family are expressed in the stem cell population and differentiated tissues. We show that set1, mll1/2, trr-1, and mll5-2 are required for regeneration and that set1, trr-1 and mll5-2 play roles in the regulation of mitosis. Most notably, knockdown of the planarian set1 homolog leads to stem cell depletion. A subset of planarian homologs of COMPASS and COMPASS -like complex proteins are also expressed in stem cells and implicated in regeneration, but the knockdown phenotypes suggest that some complex members also function in other aspects of planarian biology. This work characterizes the function of the SET1/MLL family in the context of planarian regeneration and provides insight into the role of these enzymes in adult stem cell regulation in vivo.
机译:染色质调节是干细胞多能性,分化和细胞类型特异性基因表达谱建立的基本机制。为了检查染色质在干细胞体内的调节作用,我们研究了淡水刨兰氏Schmidtea mediterranea中的再生。这些动物拥有高浓度的多能干细胞,能够在受伤或截肢后恢复任何受损或丢失的组织。在这里,我们确定组蛋白甲基转移酶和COMPASS和COMPASS样复杂蛋白的SET1 / MLL家庭的S. mediterranea同系物,并研究它们在再生过程中在干细胞功能中的作用。我们确定了SET1 / MLL家族的六个S. mediterranea同系物(set1,mll1 / 2,trr-1,trr-2,mll5-1和mll5-2),表征了它们在动物中的表达模式,并检查了它们的功能由RNAi。该家族的所有成员都在干细胞群体和分化的组织中表达。我们显示set1,mll1 / 2,trr-1和mll5-2是再生所必需的,并且set1,trr-1和mll5-2在有丝分裂的调控中发挥作用。最显着的是,击倒涡虫set1同源物会导致干细胞耗竭。 COMPASS和类似COMPASS的复杂蛋白的平面同系物的子集也在干细胞中表达并参与再生,但敲除表型表明某些复杂成员也可以在平面生物学的其他方面起作用。这项工作表征了涡虫再生背景下SET1 / MLL家族的功能,并深入了解了这些酶在体内成人干细胞调节中的作用。

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