Wakayama Sayaka, Mizutani Eiji, Wakayama Teruhiko
Center for Developmental Biology, RIKEN, Kobe, Japan.
Methods Enzymol. 2010;476:151-69. doi: 10.1016/S0076-6879(10)76009-2.
Somatic cell nuclear transfer (SCNT) has become a unique and powerful tool for epigenetic reprogramming research and gene manipulation in animals. Although the success rates of somatic cloning have been inefficient and the mechanism of reprogramming is still largely unknown, therefore, the nuclear transfer (NT) method has been thought of as a "black box approach" and inadequate to determine the detail of how genomic reprogramming occurs. However, only the NT approach can reveal dynamic and global modifications in the epigenome without using genetic modification, as well as can create live animals. At present, this is the only technique available for the preservation and propagation of valuable genetic resources from mutant mice that are infertile or too old, or recovered from carcasses, without the use of germ cells. This chapter describes a basic protocol for mouse cloning and embryonic stem (ES) cell establishment from cloned embryo using a piezo-actuated micromanipulator. This technique will greatly help not only in mouse cloning but also in other forms of micromanipulation such as intracytoplasmic sperm injection (ICSI) into oocytes or ES cell injection into blastocysts. In addition, we describe a new, more efficient mouse cloning protocol using histone deacetylase inhibitor (HDACi), which increases the success rates of cloned mice or establish rate of ES cells to fivefold.
体细胞核移植(SCNT)已成为动物表观遗传重编程研究和基因操作的一种独特而强大的工具。尽管体细胞核移植的成功率一直不高,且重编程机制在很大程度上仍不清楚,因此,核移植(NT)方法被认为是一种“黑箱方法”,不足以确定基因组重编程发生的详细过程。然而,只有核移植方法能够在不进行基因改造的情况下揭示表观基因组中的动态和全局修饰,同时还能培育出活体动物。目前,这是唯一一种可用于保存和繁殖来自不育或老龄突变小鼠、或从尸体中获取的有价值遗传资源的技术,且无需使用生殖细胞。本章介绍了一种使用压电驱动显微操作器进行小鼠克隆以及从克隆胚胎建立胚胎干细胞(ES细胞)的基本方案。这项技术不仅将极大地有助于小鼠克隆,还将有助于其他形式的显微操作,如向卵母细胞内注射精子(ICSI)或向囊胚内注射ES细胞。此外,我们还描述了一种使用组蛋白去乙酰化酶抑制剂(HDACi)的新的、更有效的小鼠克隆方案,该方案可将克隆小鼠的成功率或ES细胞的建立率提高到原来的五倍。