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首页> 外文期刊>The Journal of biological chemistry >Thyroid Hormone Activates Protein Arginine Methyltransferase 1 Expression by Directly Inducing c-Myc Transcription during Xenopus Intestinal Stem Cell Development
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Thyroid Hormone Activates Protein Arginine Methyltransferase 1 Expression by Directly Inducing c-Myc Transcription during Xenopus Intestinal Stem Cell Development

机译:甲状腺激素通过直接诱导卵宫内干细胞发育过程中的C-MYC转录来激活蛋白质精氨酸甲基转移酶1表达

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Adult organ-specific stem cells are essential for organ homeostasis and tissue repair and regeneration. The formation of such stem cells during vertebrate development is poorly understood. Intestinal remodeling during thyroid hormone (T3)-dependent Xenopus metamorphosis resembles postembryonic intestinal maturation in mammals. During metamorphosis, the intestine is remodeled de novo via a yet unknown mechanism. Protein arginine methyltransferase 1 (PRMT1) is up-regulated in and required for adult intestinal stem cells during metamorphosis. PRMT1 up-regulation is the earliest known molecular event for the developing stem cells and is also conserved during zebrafish and mouse intestinal development. To analyze how PRMT1 is specifically up-regulated during the formation of the adult intestinal stem cells, we cloned the Xenopus PRMT1 promoter and characterized it in CaCo-2 cells, a human cell line with intestinal stem cell characteristics. Through a series deletion and mutational analyses, we showed that the stem cell-associated transcription factor c-Myc could bind to a conserved site in the first intron to activate the promoter. Furthermore, we demonstrated that during metamorphosis, both c-Myc and PRMT1 were highly up-regulated, specifically in the remodeling intestine but not the resorbing tail, and that c-Myc was induced by T3 prior to PRMT1 up-regulation. In addition, we showed that T3 directly activated the c-Myc gene during metamorphosis in the intestine via binding of the T3 receptor to the c-Myc promoter. These results suggest that T3 induces c-Myc transcription directly in the intestine, that c-Myc, in turn, activates PRMT1 expression, and that this is an important gene regulation cascade controlling intestinal stem cell development.
机译:成人器官特异性干细胞对于器官稳态和组织修复和再生至关重要。在脊椎动物发育过程中形成这种干细胞的形成很差。甲状腺激素(T3) - 依赖性异爪的肠道重塑在哺乳动物中类似于后肠道肠道成熟。在变态期间,通过尚不清楚的机制,肠道被改造De Novo。蛋白质精氨酸甲基转移酶1(PRMT1)在变态期间对成人肠道干细胞进行上调和所需的。 PRMT1上调是发育干细胞的最早已知的分子事件,并且在斑马鱼和小鼠肠道发育过程中也被保守。为了分析在成人肠道干细胞的形成期间PRMT1的特异性调节程度,我们克隆了外爪疮PRMT1启动子并在CaCO-2细胞中表征了一种具有肠道干细胞特征的人细胞系。通过串联缺失和突变分析,我们表明干细胞相关的转录因子C-MYC可以与第一个内含子中的保守部位结合以激活启动子。此外,我们证明,在变态期间,C-MYC和PRMT1都是高度调节的,特别是在重塑肠中但不是再吸收尾,并且通过T3在PRMT1上调之前通过T3诱导C-MYC。此外,我们表明T3通过T3受体与C-Myc启动子的结合直接在肠中的变态期间直接激活C-Myc基因。这些结果表明,T3诱导C-Myc转录直接在肠中,C-MYC反过来激活PRMT1表达,这是控制肠道干细胞发育的重要基因调节级联。

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