Department of Embryology, Carnegie Institution for Science, 3520 San Martin Dr., Baltimore, MD 21218, USA.
Biochem Biophys Res Commun. 2013 Oct 11;440(1):8-13. doi: 10.1016/j.bbrc.2013.08.082. Epub 2013 Aug 30.
Extensive efforts have been devoted to study A-type lamins because mutations in their gene, LMNA in humans, are associated with a number of diseases. The mouse germline mutations in the A-type lamins (encoded by Lmna) exhibit postnatal lethality at either 4-8 postnatal (P) weeks or P16-18 days, depending on the deletion alleles. These mice exhibit defects in several tissues including hearts and skeletal muscles. Despite numerous studies, how the germline mutation of Lmna, which is expressed in many postnatal tissues, affects only selected tissues remains poorly understood. Addressing the tissue specific functions of Lmna requires the generation and careful characterization of conditional Lmna null alleles. Here we report the creation of a conditional Lmna knockout allele in mice by introducing loxP sites flanking the second exon of Lmna. The Lmna(flox/flox) mice are phenotypically normal and fertile. We show that Lmna homozygous mutants (Lmna(Δ/Δ)) generated by germline Cre expression display postnatal lethality at P16-18 days with defects similar to a recently reported germline Lmna knockout mouse that exhibits the earliest lethality compared to other germline knockout alleles. This conditional knockout mouse strain should serve as an important genetic tool to study the tissue specific roles of Lmna, which would contribute toward the understanding of various human diseases associated with A-type lamins.
人们投入了大量的努力来研究 A 型核纤层蛋白,因为其基因(人类中的 LMNA)的突变与许多疾病有关。在 A 型核纤层蛋白(由 Lmna 编码)的小鼠种系突变中,依赖于缺失等位基因,在出生后 4-8 周或 P16-18 天会出现致命性。这些小鼠在包括心脏和骨骼肌在内的几种组织中存在缺陷。尽管进行了许多研究,但 Lmna 的种系突变在许多出生后的组织中表达,为何仅影响特定组织仍知之甚少。要确定 Lmna 的组织特异性功能,需要生成并仔细表征条件性 Lmna 缺失等位基因。在这里,我们通过在 Lmna 的第二个外显子周围引入 loxP 位点,在小鼠中创建了一个条件性 Lmna 敲除等位基因。Lmna(flox/flox) 小鼠表型正常且具有生育能力。我们表明,通过种系 Cre 表达生成的 Lmna 纯合突变体(Lmna(Δ/Δ))在 P16-18 天出现出生后致死,具有与最近报道的种系 Lmna 敲除小鼠相似的缺陷,该小鼠与其他种系敲除等位基因相比表现出最早的致死性。这种条件性敲除小鼠品系应成为研究 Lmna 组织特异性作用的重要遗传工具,这将有助于理解与 A 型核纤层蛋白相关的各种人类疾病。