Department of Immunology, Duke University Medical Center, Durham, North Carolina 27710, USA.
J Biol Chem. 2010 Aug 20;285(34):26005-12. doi: 10.1074/jbc.M110.139196. Epub 2010 Jun 15.
The fast accumulation of mutant mouse strains in recent years has provided an invaluable resource for phenotype-based genetic screens. However, study of lymphoid phenotypes can be obscured or impractical if homozygous mutations cause early embryonic defects. To aid phenotype screening of germ line mutations in the lymphoid system, we developed a method to induce loss of heterozygosity (LOH) in developing lymphocytes through chromosome deletion. Chromosome deletion was triggered by Cre/loxP-mediated inverse sister chromatid recombination in the G(2)/M phase of the cell cycle, leading to the generation of daughter cells missing part of or the entire recombinant chromosome. We show that the resulting cells were viable and capable of additional rounds of cell division, thus providing raw materials for subsequent phenotypic assessment. We used the recombination system to induce LOH at the E2A locus in developing B cells. A significant loss of pro-B and pre-B cells was observed when the wild-type allele was removed by chromosome deletion from the E2A heterozygous mice, a result consistent with the required role for E2A in B cell development. We also demonstrated the effectiveness of Cre-mediated chromosome deletion in the LOH assay for HEB function in T cell development. Thus, the Cre-mediated chromosome deletion provides a new and effective method for genome-wide assessment of germ line mutations in the lymphoid system.
近年来,突变小鼠品系的快速积累为基于表型的遗传筛选提供了宝贵的资源。然而,如果纯合突变导致早期胚胎缺陷,那么对淋巴细胞表型的研究可能会变得模糊或不切实际。为了辅助对淋巴细胞系生殖系突变进行表型筛选,我们开发了一种通过染色体缺失诱导发育中的淋巴细胞中杂合性丢失(LOH)的方法。通过细胞周期 G2/M 期的 Cre/loxP 介导的反向姐妹染色单体重组触发染色体缺失,导致部分或整个重组染色体缺失的子细胞的产生。我们表明,产生的细胞是存活的并且能够进行额外的细胞分裂,从而为随后的表型评估提供了原材料。我们使用该重组系统在发育中的 B 细胞中诱导 E2A 基因座的 LOH。当从 E2A 杂合子小鼠中通过染色体缺失去除野生型等位基因时,观察到前 B 和未成熟 B 细胞的显著缺失,这与 E2A 在 B 细胞发育中的必需作用一致。我们还证明了 Cre 介导的染色体缺失在 T 细胞发育中 HEB 功能 LOH 测定中的有效性。因此,Cre 介导的染色体缺失为在淋巴细胞系统中进行全基因组评估生殖系突变提供了一种新的有效方法。