首页> 美国卫生研究院文献>Journal of Animal Science >Dicer1 AGO3 and AGO4 microRNA machinery genes are differentially expressed in developing female reproductive organs and overexpressed in cancerous ovaries of chickens
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Dicer1 AGO3 and AGO4 microRNA machinery genes are differentially expressed in developing female reproductive organs and overexpressed in cancerous ovaries of chickens

机译:Dicer1AGO3和AGO4 microRNA机械基因在发育中的女性生殖器官中差异表达并在鸡的癌性卵巢中过度表达

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摘要

MicroRNA (miRNA)-mediated gene silencing is a key mechanism regulating numerous biological processes such as development of organs and tumorigenesis. The expression of miRNA machinery genes linked to miRNA biogenesis and processing is finely regulated. Despite accumulating evidence for chicken miRNA in the female reproduction system, precise regulatory mechanisms are largely unknown. Therefore, the objective of this study was to determine changes in expression levels of miRNA machinery genes in developmental stages of the oviduct and ovarian carcinogenesis of laying hens. In the present study, differential expression of miRNA machinery genes during ovarian carcinogenesis was determined using cancerous and normal ovaries collected from normal laying hens and hens with cancer. Our results showed that 3 miRNA machinery genes (Dicer1, AGO3, and AGO4) were differentially expressed as laying hens' reproductive organs developed. These genes were simultaneously upregulated in cancerous ovaries compared with those in normal ovaries. Their transcripts were abundantly localized in glandular epithelial cells of cancerous ovaries. Our results indicate that Dicer1, AGO3, and AGO4 play critical roles in the development of reproductive organs and ovarian carcinogenesis in laying hens, suggesting that simultaneous overexpression of these genes might serve as a prognostic factor for ovarian cancer.
机译:MicroRNA(miRNA)介导的基因沉默是调节众多生物学过程(例如器官发育和肿瘤发生)的关键机制。与miRNA生物发生和加工相关的miRNA机器基因的表达受到严格调节。尽管在女性生殖系统中积累了有关鸡miRNA的证据,但精确的调控机制尚不清楚。因此,本研究的目的是确定产蛋鸡输卵管和卵巢癌变过程中miRNA机械基因表达水平的变化。在本研究中,使用从正常蛋鸡和患有癌症的母鸡收集的癌性卵巢和正常卵巢来确定卵巢癌发生过程中miRNA机器基因的差异表达。我们的结果表明,随着蛋鸡生殖器官的发育,三个miRNA机器基因(Dicer1,AGO3和AGO4)被差异表达。与正常卵巢相比,这些基因在卵巢癌中同时上调。它们的转录物大量定位在癌性卵巢的腺上皮细胞中。我们的结果表明,Dicer1,AGO3和AGO4在蛋鸡的生殖器官发育和卵巢癌发生中起着关键作用,表明这些基因的同时表达可能是卵巢癌的预后因素。

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