首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >CHD1 Regulates Deposition of Histone Variant H3.3 During Bovine Early Embryonic Development
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CHD1 Regulates Deposition of Histone Variant H3.3 During Bovine Early Embryonic Development

机译:CHD1调节牛早期胚胎发育过程中组蛋白变体H3.3的沉积。

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The CHD family of proteins is characterized by the presence of chromodomains and SNF2-related helicase/ATPase domains, which alter gene expression by modification of chromatin structure. Chd1-null embryos arrest at the peri-implantation stage in mice. However, the functional role of CHD1 during preimplantation development remains unclear, given maternal-derived CHD1 may mask the essential role of CHD1 during this stage in traditional knockout models. The objective of this study was to characterize CHD1 expression and elucidate its functional role in preimplantation development using the bovine model. CHD1 mRNA was elevated after meiotic maturation and remained increased through the 16-cell stage, followed by a sharp decrease at morula to blastocyst stage. Similarly, immunoblot analysis indicated CHD1 protein level is increased after maturation, maintained at high level after fertilization and declined sharply afterwards. CHD1 mRNA level was partially decreased in response to alpha-amanitin (RNA polymerase II inhibitor) treatment, suggesting that CHD1 mRNA in eight-cell embryos is of both maternal and zygotic origin. Results of siRNA-mediated silencing of CHD1 in bovine early embryos demonstrated that the percentages of embryos developing to the 8- to 16-cell and blastocyst stages were both significantly reduced. However, expression of NANOG (inner cell mass marker) and CDX2 (trophectoderm marker) were not affected in CHD1 knockdown blastocysts. In addition, we found that histone variant H3.3 immunostaining is altered in CHD1 knockdown embryos. Knockdown of H3.3 using siRNA resulted in a similar phenotype to CHD1-ablated embryos. Collectively, our results demonstrate that CHD1 is required for bovine early development, and suggest that CHD1 may regulate H3.3 deposition during this period.
机译:CHD蛋白家族的特征是存在染色质结构域和SNF2相关解旋酶/ ATPase结构域,它们通过修饰染色质结构来改变基因表达。 Chd1无效的胚胎停在小鼠的围着植入阶段。但是,由于母体来源的CHD1可能掩盖了传统敲除模型中CHD1在此阶段的重要作用,因此CHD1在植入前发育中的功能作用仍不清楚。这项研究的目的是表征CHD1表达并使用牛模型阐明其在植入前发育中的功能作用。 CHD1 mRNA在减数分裂成熟后升高,并在16细胞阶段保持增加,随后在桑ula壳到胚泡阶段急剧下降。同样,免疫印迹分析表明,CHD1蛋白水平在成熟后增加,在受精后保持在高水平,然后急剧下降。 CHD1 mRNA水平响应α-amanitin(RNA聚合酶II抑制剂)处理而部分降低,这表明八细胞胚胎中的CHD1 mRNA既来自母系,又来自合子。牛早期胚胎中siRNA介导的CHD1沉默的结果表明,发育到8至16细胞和胚泡阶段的胚胎百分比均显着降低。但是,在CHD1敲除胚泡中,NANOG(内细胞质量标志物)和CDX2(滋养外胚层标志物)的表达不受影响。此外,我们发现组蛋白变异H3.3免疫染色在CHD1基因敲除胚胎中发生了改变。使用siRNA敲除H3.3产生与CHD1消融胚胎相似的表型。总体而言,我们的结果表明,CHD1是牛早期发育所必需的,并表明CHD1可能在此期间调节H3.3的沉积。

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