Shawlot W, Deng J M, Fohn L E, Behringer R R
Department of Molecular Genetics, University of Texas M.D. Anderson Cancer Center, Houston 77030, USA.
Transgenic Res. 1998 Mar;7(2):95-103. doi: 10.1023/a:1008816308171.
beta-actin is a cytoskeletal protein that is ubiquitously expressed. To exploit the regulation the beta-actin gene, a promoterless hygromycin-lacZ fusion gene with a splice acceptor was introduced into the first intron of the beta-actin locus by homologous recombination in mouse embryonic stem (ES) cells. The targeted ES cells were hygromycin resistant and expressed beta-galactosidase (beta-gal) activity. However, no beta-gal activity was detected in heterozygous embryos. In adult heterozygotes, beta-gal activity was detected only in testes. RT-PCR analysis demonstrated the presence of both beta-actin exon 1-hygromycin- and exon l-exon 2-containing transcripts in homozygous mutant embryos. LacZ-containing transcripts were detected in adult heterozygous tests and, surprisingly, in homozygous mutant embryos. These results demonstrate that the integration of the hygromycin-lacZ gene into the first intron of the beta-actin locus was not productive for the ubiquitous expression of beta-gal activity. Because this integration mimics certain types of gene trap events, it suggests that caution should be used when interpreting beta-gal expression patterns in genetic screens using gene trap strategies. In addition, mice homozygous for the beta-actin mutation developed normally up to embryonic day 8.5 (E8.5) but became growth retarded at E9.5 and subsequently died. The RT-PCR data indicate that this targeted mutation is a hypomorphic allele of beta-actin.
β-肌动蛋白是一种在全身广泛表达的细胞骨架蛋白。为了研究β-肌动蛋白基因的调控机制,通过在小鼠胚胎干细胞(ES细胞)中进行同源重组,将一个带有剪接受体的无启动子潮霉素-乳糖酶Z融合基因导入β-肌动蛋白基因座的第一个内含子中。靶向的ES细胞对潮霉素具有抗性,并表达β-半乳糖苷酶(β-gal)活性。然而,在杂合子胚胎中未检测到β-gal活性。在成年杂合子中,仅在睾丸中检测到β-gal活性。逆转录聚合酶链反应(RT-PCR)分析表明,在纯合突变胚胎中同时存在包含β-肌动蛋白外显子1-潮霉素和外显子1-外显子2的转录本。在成年杂合子睾丸中检测到了含LacZ的转录本,令人惊讶的是,在纯合突变胚胎中也检测到了。这些结果表明,将潮霉素-乳糖酶Z基因整合到β-肌动蛋白基因座的第一个内含子中,并不能有效地实现β-gal活性的普遍表达。由于这种整合模拟了某些类型的基因捕获事件,这表明在使用基因捕获策略进行遗传筛选时,解释β-gal表达模式时应谨慎。此外,β-肌动蛋白突变的纯合小鼠在胚胎发育到第8.5天(E8.5)之前发育正常,但在E9.5时生长迟缓,随后死亡。RT-PCR数据表明,这种靶向突变是β-肌动蛋白的一个低表达等位基因。