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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Inhibition of Skp1-Cullin-F-box complexes during bovine oocyte maturation and preimplantation development leads to delayed development of embryos
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Inhibition of Skp1-Cullin-F-box complexes during bovine oocyte maturation and preimplantation development leads to delayed development of embryos

机译:在牛卵母细胞成熟期间的SKP1-Cullin-F盒复合物的抑制导致胚胎的延迟发育

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摘要

The mechanism of maternal protein degradation during preimplantation development has not been clarified yet. It is thought that a lot of maternal proteins are degraded by the ubiquitin-proteasome system. In this study, we focused on the role of the SCF (Skp1-Cullin-F-box) complexes during early bovine embryogenesis. We inhibited them using MLN4924, an inhibitor of SCF complex ligases controlled by neddylation. Oocytes maturated in MLN4924 could be fertilized, but we found no cumulus cell expansion and a high number of polyspermy after in vitro fertilization. We also found a statistically significant deterioration of development after MLN4924 treatment. After treatment with MLN4924 from the four-cell to late eight-cell stage, we found a statistically significant delay in their development; some of the treated embryos were, however, able to reach the blastocyst stage later. We found reduced levels of mRNA of EGA markers PAPOLA and U2AF1A, which can be related to this developmental delay. The cultivation with MLN4924 caused a significant increase in protein levels in MLN4924-treated oocytes and embryos; no such change was found in cumulus cells. To detect the proteins affected by MLN4924 treatment, we performed a Western blot analysis of selected proteins (SMAD4, ribosomal protein S6, centromeric protein E, P27, NFKB inhibitor alpha, RNA-binding motif protein 19). No statistically significant increase in protein levels was detected in either treated embryos or oocytes. In summary, our study shows that SCF ligases are necessary for the correct maturation of oocytes, cumulus cell expansion, fertilization, and early preimplantation development of cattle.
机译:尚未澄清母体蛋白质降解的机制尚未澄清。据认为,泛素 - 蛋白酶体系的许多母体蛋白质都会降解。在本研究中,我们专注于SCF(SKP1-CULLIN-F盒)复合物在早期牛胚胎发生期间的作用。我们使用MLN4924抑制它们,SCF复合酶的抑制剂由NeDdylation控制。在MLN4924中良好的卵母细胞可以受精,但在体外施肥后,我们发现没有积分细胞膨胀和大量的多患者。我们还发现MLN4924治疗后发育的统计学显着恶化。在用来自四个细胞到八个细胞阶段的四个细胞的MLN4924治疗后,我们发现其发展统计学显着延迟;然而,一些经过治疗的胚胎以后能够达到胚泡阶段。我们发现,EGA标记乳头和U2AF1A的mRNA水平降低,这可能与这种发育延迟有关。 MLN4924的培养使MLN4924处理的卵母细胞和胚胎中的蛋白质水平显着增加;积云中没有发现这种变化。为了检测受MlN4924治疗影响的蛋白质,我们进行了选定蛋白质的蛋白质印迹分析(Smad4,核糖体蛋白S6,焦化蛋白E,P27,NFKB抑制剂α,RNA结合基序蛋白19)。在治疗的胚胎或卵母细胞中没有检测到统计学上显着的蛋白质水平增加。总之,我们的研究表明,SCF连接酶是卵母细胞,积云扩张,施肥和牛的早期预热发展所必需的。

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