首页> 外文期刊>Nature cell biology >BMI1 represses Ink4a/Arf and Hox genes to regulate stem cells in the rodent incisor.
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BMI1 represses Ink4a/Arf and Hox genes to regulate stem cells in the rodent incisor.

机译:BMI1抑制Ink4a / Arf和Hox基因来调节啮齿动物门齿中的干细胞。

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摘要

The polycomb group gene Bmi1 is required for maintenance of adult stem cells in many organs. Inactivation of Bmi1 leads to impaired stem cell self-renewal due to deregulated gene expression. One critical target of BMI1 is Ink4a/Arf, which encodes the cell-cycle inhibitors p16(Ink4a) and p19(Arf). However, deletion of Ink4a/Arf only partially rescues Bmi1-null phenotypes, indicating that other important targets of BMI1 exist. Here, using the continuously growing mouse incisor as a model system, we report that Bmi1 is expressed by incisor stem cells and that deletion of Bmi1 resulted in fewer stem cells, perturbed gene expression and defective enamel production. Transcriptional profiling revealed that Hox expression is normally repressed by BMI1 in the adult, and functional assays demonstrated that BMI1-mediated repression of Hox genes preserves the undifferentiated state of stem cells. As Hox gene upregulation has also been reported in other systems when Bmi1 is inactivated, our findings point to a general mechanism whereby BMI1-mediated repression of Hox genes is required for the maintenance of adult stem cells and for prevention of inappropriate differentiation.
机译:维持许多器官中的成年干细胞需要多梳子基团基因Bmi1。由于基因表达失调,Bmi1失活导致干细胞自我更新受损。 BMI1的一个关键目标是Ink4a / Arf,它编码细胞周期抑制剂p16(Ink4a)和p19(Arf)。但是,Ink4a / Arf的删除只能部分挽救Bmi1空表型,表明存在BMI1的其他重要目标。在这里,使用持续增长的小鼠门牙作为模型系统,我们报道了Bmi1由门牙干细胞表达,而Bmi1的缺失导致干细胞减少,基因表达受到干扰以及牙釉质产生不良。转录谱分析表明,成年人中BMI1通常抑制Hox表达,功能测定表明,BMI1介导的Hox基因抑制可保留干细胞的未分化状态。由于当Bmi1失活时,其他系统中还存在Hox基因上调的报道,因此我们的发现指向一种一般机制,其中BMI1介导的Hox基因抑制是维持成人干细胞和防止不适当分化所必需的。

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