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通过单次回交至129/Sv品系规避小鼠胚胎干细胞(ES细胞)衍生的非许可性:建立携带Omd条件致死突变的ES细胞系。

Nonpermissiveness for mouse embryonic stem (ES) cell derivation circumvented by a single backcross to 129/Sv strain: establishment of ES cell lines bearing the Omd conditional lethal mutation.

作者信息

Kress C, Vandormael-Pournin S, Baldacci P, Cohen-Tannoudji M, Babinet C

机构信息

Unité de Biologie du Développement, URA C.N.R.S. 1960, Institut Pasteur, 25 rue du Docteur Roux, 75724 Paris Cedex 15, France.

出版信息

Mamm Genome. 1998 Dec;9(12):998-1001. doi: 10.1007/s003359900914.

Abstract

The inbred mouse strain DDK carries a conditional early embryonic lethal mutation that is manifested when DDK females are crossed to males of other inbred strains but not in the corresponding reciprocal crosses. It has been shown that embryonic lethality could be assigned to a single genetic locus called Ovum mutant (Om), on Chromosome (Chr) 11 near Syca 1. In the course of our study of the molecular mechanisms underlying the embryonic lethality, we were interested in deriving an embryonic stem cell bearing the Om mutation in the homozygous state (Omd/Omd). However, it turned out that DDK is nonpermissive for ES cell establishment, with a standard protocol. Here we show that permissiveness could be obtained using Omd/Omd blastocysts with a 75% 129/Sv and 25% DDK genetic background. Several germline-competent Omd/Omd ES cell lines have been derived from blastocysts of this genotype. Such a scenario could be extended to the generation of ES cell lines bearing any mutation present in an otherwise nonpermissive mouse strain.

摘要

近交系小鼠品系DDK携带一种条件性早期胚胎致死突变,当DDK雌性与其他近交系雄性杂交时会表现出来,但在相应的反交中则不会。研究表明,胚胎致死性可归因于位于11号染色体上靠近Syca 1的一个名为卵突变体(Om)的单一基因座。在我们对胚胎致死性潜在分子机制的研究过程中,我们有兴趣获得一个纯合状态携带Om突变(Omd/Omd)的胚胎干细胞。然而,结果表明,按照标准方案,DDK不适合建立胚胎干细胞系。在这里我们表明,使用具有75% 129/Sv和25% DDK遗传背景的Omd/Omd囊胚可以获得允许性。已经从这种基因型的囊胚中获得了几个具有种系能力的Omd/Omd胚胎干细胞系。这种情况可以扩展到生成携带任何存在于原本不允许的小鼠品系中的突变的胚胎干细胞系。

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