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首页> 外文期刊>BMC Genetics >Generation of an 870?kb deletion encompassing the Skt/Etl4 locus by combination of inter- and intra-chromosomal recombination
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Generation of an 870?kb deletion encompassing the Skt/Etl4 locus by combination of inter- and intra-chromosomal recombination

机译:通过染色体间和染色体内重组的结合产生一个包含Skt / Etl4基因座的870?kb缺失

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Background Etl4lacZ (Enhancer trap locus 4) and SktGt (Sickle tail) are lacZ reporter gene integrations into the same locus on mouse chromosome 2 targeting a gene that is expressed in the notochord of early embryos and in multiple epithelia during later development. Both insertions caused recessive mutations that resulted exclusively in mild defects in the caudal vertebral column. Since notochord-derived signals are essential for formation of the vertebral column the phenotypes suggested that the lacZ insertions interfered with some notochord-dependent aspect of vertebral development. As both insertions occurred in introns it was unclear whether they represent hypomorphic alleles or abolish gene function. Here, we have generated a definitive null allele of the Skt/Etl4 gene and analysed homozygous mutants. Results We have introduced loxP sites into three positions of the gene based on additional upstream exons that we identified, and deleted approximately 870?kb of the locus by a combination of inter- and intra-chromosomal Cre-mediated recombinations in the female germ line of mice. This deletion removes about 90?% of the coding region and results in the loss of the SKT/ETL4 protein. Similar to the Etl4lacZ and SktGt alleles our deletion mutants are viable and fertile and show only mild defects in caudal vertebrae due to abnormal intervertebral disc development, although with higher penetrance. No other tissue with Skt/Etl4 expression that we analysed showed obvious defects. Conclusion The complete loss of Skt/Etl4 function affects only development of caudal notochord derivatives and is compensated for in its other expression domains.
机译:背景Etl4 lacZ (增强子陷阱基因座4)和Skt Gt (镰刀尾)是lacZ报告基因整合到小鼠染色体2上同一基因座中,靶向于在早期胚胎的脊索和后期发育中的多个上皮细胞。两次插入均引起隐性突变,仅导致尾椎柱的轻度缺陷。由于脊索来源的信号对于脊柱的形成至关重要,因此表型表明lacZ插入会干扰脊索依赖的某些椎骨发育方面。由于这两种插入均发生在内含子中,因此尚不清楚它们是否代表亚型等位基因或废除基因功能。在这里,我们生成了Skt / Etl4基因的确定无效等位基因,并分析了纯合突变体。结果我们根据我们确定的其他上游外显子将loxP位点引入基因的三个位置,并通过Cre介导的染色体间和染色体内Cre介导的重组结合缺失了约870?kb的基因座。老鼠。这种删除除去了约90%的编码区,并导致SKT / ETL4蛋白的丢失。与Etl4 lacZ 和Skt Gt 等位基因相似,我们的缺失突变体是可行且可育的,仅因椎间盘异常发育而在尾椎骨中仅表现出轻度缺陷,尽管其渗透率更高。我们分析的没有其他具有Skt / Etl4表达的组织显示出明显的缺陷。结论Skt / Etl4功能的完全丧失仅影响尾部脊索导数的发育,并在其其他表达域中得到补偿。

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