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首页> 外文期刊>Stem Cells >Long noncoding RNA Q associates with Sox2 and is involved in the maintenance of pluripotency in mouse embryonic stem cells
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Long noncoding RNA Q associates with Sox2 and is involved in the maintenance of pluripotency in mouse embryonic stem cells

机译:长非致RNA Q与SOX2相关联,并参与在小鼠胚胎干细胞中的多能性维持

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Large intergenic noncoding RNAs (lincRNAs) in ESCs may play an important role in the maintenance of pluripotency. The identification of stem cell-specific lincRNAs and their interacting partners will deepen our understanding of the maintenance of stem cell pluripotency. We identified a lincRNA, LincQ, which is specifically expressed in ESCs and is regulated by core pluripotent transcription factors. It was rapidly downregulated during the differentiation process. Knockdown of LincQ in ESCs led to differentiation, downregulation of pluripotency-related genes, and upregulation of differentiation-related genes. We found that exon 1 of LincQ can specifically bind to Sox2. The Soxp region in Sox2, rather than the high mobility group domain, is responsible for LincQ binding. Importantly, the interaction between LincQ and Sox2 is required for the maintenance of pluripotency in ESCs and the transcription of pluripotency genes. Esrrb and Tfcp2l1 are key downstream targets of LincQ and Sox2, since overexpression of Esrrb and Tfcp2l1 can restore the loss of ESC pluripotency that is induced by LincQ depletion. In summary, we found that LincQ specifically interacts with Sox2 and contributes to the maintenance of pluripotency, highlighting the critical role of lincRNA in the pluripotency regulatory network.
机译:ESC中的大型非基础非编码RNA(LINCRNA)可能在多能性的维持中起重要作用。干细胞特异性Lincrnas及其互动伴侣的鉴定将深化我们对干细胞多能性维持的理解。我们鉴定了一种LincrNA,Lincq,其在ESC中特异性表达,并受核心多能转录因子调节。在分化过程中迅速下调。 LICQ在ESC的敲低导致分化,多能性相关基因的下调,以及对不同相关基因的上调。我们发现LINCQ的外显子1可以特异性结合SOX2。 SOX2中的SOxP区域,而不是高迁移率组结构域,负责LINCQ结合。重要的是,LINCQ和SOX2之间的相互作用是在ESC的多能性和多能性基因的转录中维持多能性所必需的。 ESRRB和TFCP2L1是LINCQ和SOX2的关键下游靶标,因为ESRRB和TFCP2L1的过度表达可以恢复由LINCQ耗尽诱导的ESC多能性的损失。总之,我们发现LINCQ特异性与SOX2相互作用,有助于维持多能性,突出LINCRNA在多能程度监管网络中的关键作用。

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