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受精前TALEN的表达在非洲爪蟾奠基胚胎中提供快速敲除表型。

The Expression of TALEN before Fertilization Provides a Rapid Knock-Out Phenotype in Xenopus laevis Founder Embryos.

作者信息

Miyamoto Kei, Suzuki Ken-Ichi T, Suzuki Miyuki, Sakane Yuto, Sakuma Tetsushi, Herberg Sarah, Simeone Angela, Simpson David, Jullien Jerome, Yamamoto Takashi, Gurdon J B

机构信息

Wellcome Trust/Cancer Research UK Gurdon Institute, University of Cambridge, Cambridge, United Kingdom.

Department of Mathematical and Life Sciences, Graduate School of Science, Hiroshima University, Higashi-Hiroshima, Japan.

出版信息

PLoS One. 2015 Nov 18;10(11):e0142946. doi: 10.1371/journal.pone.0142946. eCollection 2015.

Abstract

Recent advances in genome editing using programmable nucleases have revolutionized gene targeting in various organisms. Successful gene knock-out has been shown in Xenopus, a widely used model organism, although a system enabling less mosaic knock-out in founder embryos (F0) needs to be explored in order to judge phenotypes in the F0 generation. Here, we injected modified highly active transcription activator-like effector nuclease (TALEN) mRNA to oocytes at the germinal vesicle (GV) stage, followed by in vitro maturation and intracytoplasmic sperm injection, to achieve a full knock-out in F0 embryos. Unlike conventional injection methods to fertilized embryos, the injection of TALEN mRNA into GV oocytes allows expression of nucleases before fertilization, enabling them to work from an earlier stage. Using this procedure, most of developed embryos showed full knock-out phenotypes of the pigmentation gene tyrosinase and/or embryonic lethal gene pax6 in the founder generation. In addition, our method permitted a large 1 kb deletion. Thus, we describe nearly complete gene knock-out phenotypes in Xenopus laevis F0 embryos. The presented method will help to accelerate the production of knock-out frogs since we can bypass an extra generation of about 1 year in Xenopus laevis. Meantime, our method provides a unique opportunity to rapidly test the developmental effects of disrupting those genes that do not permit growth to an adult able to reproduce. In addition, the protocol shown here is considerably less invasive than the previously used host transfer since our protocol does not require surgery. The experimental scheme presented is potentially applicable to other organisms such as mammals and fish to resolve common issues of mosaicism in founders.

摘要

利用可编程核酸酶进行基因组编辑的最新进展彻底改变了各种生物体中的基因靶向。在非洲爪蟾(一种广泛使用的模式生物)中已成功实现基因敲除,不过为了在奠基胚胎(F0)中判断表型,仍需探索一种能减少嵌合敲除的系统。在此,我们在生发泡(GV)期向卵母细胞注射修饰后的高活性转录激活因子样效应物核酸酶(TALEN)mRNA,随后进行体外成熟和胞质内精子注射,以在F0胚胎中实现完全敲除。与向受精卵注射的传统方法不同,将TALEN mRNA注射到GV卵母细胞中可使核酸酶在受精前表达,从而使其能在更早阶段发挥作用。通过这一程序,大多数发育的胚胎在奠基代中显示出色素沉着基因酪氨酸酶和/或胚胎致死基因pax6的完全敲除表型。此外,我们的方法允许进行1 kb的大片段缺失。因此,我们描述了非洲爪蟾F0胚胎中近乎完全的基因敲除表型。所提出的方法将有助于加速敲除青蛙的产生,因为我们可以绕过非洲爪蟾约一年的额外世代时间。同时,我们的方法提供了一个独特的机会,可快速测试破坏那些不允许生长至成年并能繁殖的基因所产生的发育影响。此外,此处所示的方案相比先前使用的宿主移植具有更小的侵入性,因为我们的方案不需要手术。所呈现的实验方案可能适用于其他生物体,如哺乳动物和鱼类,以解决奠基者中常见的嵌合问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e40/4651567/f5bf6efe049a/pone.0142946.g001.jpg

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