首页> 外文期刊>Reproduction, fertility, and development >Ago2 and GW182 expression in mouse preimplantation embryos: a link between microRNA biogenesis and GW182 protein synthesis.
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Ago2 and GW182 expression in mouse preimplantation embryos: a link between microRNA biogenesis and GW182 protein synthesis.

机译:小鼠植入前胚胎中的Ago2和GW182表达:microRNA生物发生与GW182蛋白合成之间的联系。

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摘要

MicroRNA-mediated RNA interference appears to play a role in early development and differentiation processes in preimplantation embryos. However, the expression of its key effectors, including Ago2, a key component of the RNA-induced silencing complex, and GW182, a critical component of GW bodies (GWBs), has not been assessed in preimplantation embryos. To characterise the roles of Ago2 and GW182 in early embryo development, we determined their transcription and protein synthesis in mouse embryos. Transcript levels of Ago2 and GW182 increased steadily from the one-cell stage through to the blastocyst stage when data were not normalised against an internal reference. However, when normalised against the internal standard, transcript levels for both genes were highest in four-cell stage embryos and decreased steadily through to the blastocyst stage. Indirect immunocytochemistry showed that both AGO2 and GW182 proteins were expressed in each stage in the early embryo and were observed to colocalise in the morula and blastocyst stages. Specific silencing of mRNA expression by short interference (si) RNA against Ago2 or Dicer1 decreased the expression of selected apoptosis- and development-related microRNAs, but did not inhibit development up to the blastocyst stage. However, transcription levels of Oct3/4, Nanog and Sox2 were decreased in both Ago2- and Dicer1-knockdown embryos at the blastocyst stage. Furthermore, although knockdown of these genes did not change transcript levels of GW182, GW182 protein synthesis was decreased in blastocyst stage embryos. These results suggest that Ago2 and Dicer1 regulate GW182 protein expression in mouse embryos, which is linked to microRNA biogenesis and likely to be important for differentiation in the blastocyst stage.
机译:MicroRNA介导的RNA干扰似乎在植入前胚胎的早期发育和分化过程中起作用。但是,尚未在植入前的胚胎中评估其关键效应子的表达,包括Ago2(RNA诱导的沉默复合物的关键成分)和GW182(GW体(GWB)的关键成分)的表达。为了表征Ago2和GW182在早期胚胎发育中的作用,我们确定了它们在小鼠胚胎中的转录和蛋白质合成。当数据未针对内部参考进行标准化时,Ago2和GW182的转录水平从单细胞阶段一直持续到胚泡阶段。然而,当相对于内标标准化时,两个基因的转录水平在四细胞期胚胎中最高,并在胚泡期稳定下降。间接免疫细胞化学表明,AGO2和GW182蛋白在早期胚胎的每个阶段均表达,并在桑ula和胚泡阶段共定位。通过针对Ago2或Dicer1的短干扰(si)RNA特异性沉默mRNA表达,降低了与凋亡和发育相关的特定microRNA的表达,但并未抑制发育到胚泡期。然而,在胚泡阶段,Ago2-和Dicer1-敲低的胚胎中Oct3 / 4,Nanog和Sox2的转录水平均降低。此外,尽管这些基因的敲低并没有改变GW182的转录水平,但在胚泡期胚胎中GW182蛋白的合成却降低了。这些结果表明,Ago2和Dicer1调节小鼠胚胎中GW182蛋白的表达,这与microRNA生物发生有关,并且可能对胚泡期的分化很重要。

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