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首页> 外文期刊>Journal of proteome research >Stage-Specific Proteome Signatures in Early Bovine Embryo Development
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Stage-Specific Proteome Signatures in Early Bovine Embryo Development

机译:牛胚胎早期发育中的特定阶段蛋白质组特征。

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Development of early embryonic stages before activation of the embryonic genome depends on sufficiently stored products of the maternal genome, adequate recruitment and degradation of mRNAs, as well as activation, deactivation, and relocation of proteins. By application of an isobaric tagging for relative and absolute quantification (iTRAQ)-based approach, the proteomes of bovine embryos at the zygote and 2-cell and 4-cell stage with MII oocytes as a reference were quantitatively analyzed. Of 1072 quantified proteins, 87 differed significantly in abundance between the four stages. The proteomes of 2-cell and 4-cell embryos differed most from the reference MII oocyte, and a considerable fraction of proteins continuously increased in abundance during the stages analyzed, despite a strongly attenuated rate of translation reported for this period. Bioinformatic analysis revealed particularly interesting proteins involved in the p53 pathway, lipid metabolism, and mitosis. Verification of iTRAQ results by targeted SRM (selected reaction monitoring) analysis revealed excellent agreement for all five proteins analyzed. By principal component analysis, SRM quantifications comprising a panel of only five proteins were shown to discriminate between all four developmental stages analyzed here. For future experiments, an expanded SRM protein panel will provide the potential to detect developmental disturbances with high sensitivity and enable first insights into the underlying molecular pathways.
机译:胚胎基因组激活之前的早期胚胎阶段的发育取决于母体基因组的充分存储的产品,mRNA的充分募集和降解以及蛋白质的激活,失活和重新定位。通过应用基于同量异位标记的相对和绝对定量(iTRAQ)方法,以MII卵母细胞为参考,对合子,2细胞和4细胞阶段牛胚的蛋白质组进行了定量分析。在1072个定量蛋白质中,四个阶段之间的87个蛋白质丰度差异显着。 2细胞和4细胞胚胎的蛋白质组与参考MII卵母细胞的差异最大,尽管这一时期报道的翻译速率大大降低,但在所分析的阶段中,相当一部分蛋白质的丰度不断增加。生物信息学分析揭示了与p53途径,脂质代谢和有丝分裂有关的特别有趣的蛋白质。通过靶向SRM(选定反应监测)分析对iTRAQ结果进行验证,结果表明,所分析的所有5种蛋白质均具有极好的一致性。通过主成分分析,仅包含五种蛋白质的一组SRM定量显示可区分此处分析的所有四个发育阶段。对于未来的实验,扩展的SRM蛋白面板将提供以高灵敏度检测发育障碍的潜力,并使人们能够深入了解潜在的分子途径。

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