微量注射
电穿孔
条件基因敲除
转基因
基因敲除
生物
Cre重组酶
遗传学
寡核苷酸
Cre-Lox重组
基因靶向
合子
基因
分子生物学
计算生物学
转基因小鼠
细胞生物学
表型
胚胎发生
作者
Takuro Horii,Sumiyo Morita,Mika Kimura,Naomi Terawaki,Mihiro Shibutani,Izuho Hatada
标识
DOI:10.1038/s41598-017-08496-8
摘要
Conditional knockout using Cre/lox is essential for functional analysis of genes. CRISPR/Cas in combination with two sets of guide RNAs and a single-stranded oligonucleotide enables simultaneous insertion of two lox sequences. However, this method induces double-strand breaks at two sites on the same chromosome, which causes an undesirable chromosomal deletion and reduces the flanked lox (flox) rate. To solve this problem, we investigated a method that sequentially introduces each lox sequence at the 1-cell and 2-cell embryonic stages, respectively. The sequential method was applied to both microinjection and electroporation systems. Sequential electroporation improved the flox efficiency compared with ordinary simultaneous microinjection, leading to a high yield of offspring with floxed alleles. Finally, we directly produced Cre/lox mice containing both the Cre transgene and floxed allele via sequential electroporation using Cre zygotes, which accelerated the generation of conditional knockout mice compared with the ordinary method.
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