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通过 Zp3 转录驱动的内含子人工 microRNAs 对卵母细胞特异性基因进行敲低。

Oocyte-specific gene knockdown by intronic artificial microRNAs driven by Zp3 transcription in mice.

机构信息

Department of Bioscience, Tokyo University of Agriculture, Tokyo 156-8502, Japan.

Research Fellow of Japan Society for the Promotion of Science, Tokyo 102-0083, Japan.

出版信息

J Reprod Dev. 2021 Jun 21;67(3):229-234. doi: 10.1262/jrd.2020-146. Epub 2021 Mar 13.

Abstract

Conditional knockout technology is a powerful tool for investigating the spatiotemporal functions of target genes. However, generation of conditional knockout mice involves complicated breeding programs and considerable time. A recent study has shown that artificially designed microRNAs (amiRNAs), inserted into an intron of the constitutively expressed gene, induce knockdown of the targeted gene in mice, thus creating a simpler method to analyze the functions of target genes in oocytes. Here, to establish an oocyte-specific knockdown system, amiRNA sequences against enhanced green fluorescent protein (EGFP) were knocked into the intronic sites of the Zp3 gene. Knock-in mice were then bred with EGFP transgenic mice. Our results showed that Zp3-derived amiRNA successfully reduced EGFP fluorescence in the oocytes in a size-dependent manner. Importantly, knockdown of EGFP did not occur in somatic cells. Thus, we present our knockdown system as a tool for screening gene functions in mouse oocytes.

摘要

条件性基因敲除技术是研究靶基因时空功能的有力工具。然而,条件性基因敲除小鼠的产生涉及复杂的繁殖计划和相当多的时间。最近的一项研究表明,人工设计的 microRNAs(amiRNAs)插入到组成型表达基因的内含子中,可在小鼠中诱导靶基因的敲低,从而为分析靶基因在卵母细胞中的功能提供了一种更简单的方法。在这里,为了建立卵母细胞特异性敲低系统,针对增强型绿色荧光蛋白(EGFP)的 amiRNA 序列被敲入 Zp3 基因的内含子位点。然后,将带有 Zp3 衍生的 amiRNA 的 knock-in 小鼠与 EGFP 转基因小鼠进行杂交。我们的结果表明,Zp3 衍生的 amiRNA 能够以大小依赖的方式成功降低卵母细胞中的 EGFP 荧光。重要的是,EGFP 的敲低不会发生在体细胞中。因此,我们提出了我们的敲低系统,作为筛选小鼠卵母细胞中基因功能的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00fd/8238676/6b8d6d19d6d6/jrd-67-229-g001.jpg

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