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首页> 外文期刊>Frontiers in Genetics >Bovine Embryo-Secreted microRNA-30c Is a Potential Non-invasive Biomarker for Hampered Preimplantation Developmental Competence
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Bovine Embryo-Secreted microRNA-30c Is a Potential Non-invasive Biomarker for Hampered Preimplantation Developmental Competence

机译:牛胚胎分泌的microRNA-30c是植入前发育能力受阻的潜在非侵入性生物标记。

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摘要

Recently, secreted microRNAs (miRNAs) have received a lot of attention since they may act as autocrine factors. However, how secreted miRNAs influence embryonic development is still poorly understood. We identified 294 miRNAs, 114 known, and 180 novel, in the conditioned medium of individually cultured bovine embryos. Of these miRNAs, miR-30c and miR-10b were much more abundant in conditioned medium of slow cleaving embryos compared to intermediate cleaving ones. MiR-10b, miR-novel-44, and miR-novel-45 were higher expressed in the conditioned medium of degenerate embryos compared to blastocysts, while the reverse was observed for miR-novel-113 and miR-novel-139. Supplementation of miR-30c mimics into the culture medium confirmed the uptake of miR-30c mimics by embryos and resulted in increased cell apoptosis, as also shown after delivery of miR-30c mimics in Madin-Darby bovine kidney cells (MDBKs). We also demonstrated that miR-30c directly targets Cyclin-dependent kinase 12 ( CDK12 ) through its 3′ untranslated region (3′-UTR) and inhibits its expression. Overexpression and downregulation of CDK12 revealed the opposite results of the delivery of miRNA-30c mimics and inhibitor. The significant down-regulation of several tested DNA damage response (DDR) genes, after increasing miR-30c or reducing CDK12 expression, suggests a possible role for miR-30c in regulating embryo development through DDR pathways.
机译:近年来,分泌的microRNA(miRNA)可能会作为自分泌因子,因此受到了广泛的关注。但是,人们仍然很少了解分泌的miRNA如何影响胚胎发育。我们在单独培养的牛胚胎的条件培养基中鉴定出294个miRNA,114个已知的和180个新颖的。在这些miRNA中,与中等裂解的胚胎相比,miR-30c和miR-10b在慢裂解胚胎的条件培养基中含量更高。与胚泡相比,退化胚的条件培养基中的miR-10b,miR-novel-44和miR-novel-45的表达更高,而miR-novel-113和miR-novel-139则相反。向培养基中补充miR-30c模拟物证实了胚胎对miR-30c模拟物的吸收并导致细胞凋亡增加,这也与在Madin-Darby牛肾细胞(MDBKs)中传递miR-30c模拟物后显示的一样。我们还证明了miR-30c通过其3'非翻译区(3'-UTR)直接靶向细胞周期蛋白依赖性激酶12(CDK12)并抑制其表达。 CDK12的过表达和下调揭示了miRNA-30c模拟物和抑制剂的传递相反的结果。在增加miR-30c或减少CDK12表达后,几个测试的DNA损伤反应(DDR)基因的显着下调表明miR-30c在通过DDR途径调节胚胎发育中的可能作用。

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