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The chromatin remodeling factor Chd1l is required in the preimplantation embryo

机译:植入前胚胎需要染色质重塑因子Chd11

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During preimplantation development, the embryo must establish totipotency and enact the earliest differentiation choices, processes that involve extensive chromatin modification. To identify novel developmental regulators, we screened for genes that are preferentially transcribed in the pluripotent inner cell mass (ICM) of the mouse blastocyst. Genes that encode chromatin remodeling factors were prominently represented in the ICM, including Chd1l , a member of the Snf2 gene family. Chd1l is developmentally regulated and expressed in embryonic stem (ES) cells, but its role in development has not been investigated. Here we show that inhibiting Chd1l protein production by microinjection of antisense morpholinos causes arrest prior to the blastocyst stage. Despite this important function in vivo , Chd1l is non-essential for cultured ES cell survival, pluripotency, or differentiation, suggesting that Chd1l is vital for events in embryos that are distinct from events in ES cells. Our data reveal a novel role for the chromatin remodeling factor Chd1l in the earliest cell divisions of mammalian development.
机译:在植入前的发育过程中,胚胎必须建立全能并制定最早的分化选择,即涉及大量染色质修饰的过程。为了鉴定新的发育调节剂,我们筛选了优先在小鼠胚泡多能性内细胞团(ICM)中转录的基因。编码染色质重塑因子的基因在ICM中得到了显着的代表,包括Snd2基因家族成员Chd11。 Chd11l在胚胎干(ES)细胞中受到发育调节并表达,但尚未研究其在发育中的作用。在这里,我们显示通过反注射吗啉代的微注射抑制Chd11蛋白的产生导致胚泡阶段之前的逮捕。尽管在体内具有这一重要功能,但Chd11对于培养的ES细胞存活,多能性或分化而言并不是必需的,这表明Chd11对于不同于ES细胞事件的胚胎事件至关重要。我们的数据揭示了染色质重塑因子Chd11在哺乳动物发育的最早细胞分裂中的新作用。

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