Laboratory for Genome Science, Department of Life Science, Chiba Institute of Technology, 2-17-1 Tsudanuma, Narashino, Chiba 275-0016, Japan.
Bioresource Engineering Division, BioResource Research Center, RIKEN, 3-1-1 Koyadai, Tsukuba, Ibaraki 305-0074, Japan.
Exp Anim. 2024 Jul 9;73(3):310-318. doi: 10.1538/expanim.24-0002. Epub 2024 Mar 6.
Allele-specific monoallelic gene expression is a unique phenomenon and a great resource for analyzing gene regulation. To study this phenomenon, we established new embryonic stem (ES) cell lines derived from F1 hybrid blastocysts from crosses between four mouse subspecies (Mus musculus domesticus, C57BL/6; M. musculus molossinus, MSM/Ms; M. musculus musculus, PWK; M. musculus castaneus, HMI/Ms) and analyzed the expression levels of undifferentiated pluripotent stem cell markers and karyotypes of each line. To demonstrate the utility of our cell lines, we analyzed the allele-specific expression pattern of the Inpp5d gene as an example. The allelic expression depended on the parental alleles; this dependence could be a consequence of differences in compatibility between cis- and trans-elements of the Inpp5d gene from different subspecies. The use of parental mice from four subspecies greatly enhanced genetic polymorphism. The F1 hybrid ES cells retained this polymorphism not only in the Inpp5d gene, but also at a genome-wide level. As we demonstrated for the Inpp5d gene, the established cell lines can contribute to the analysis of allelic expression imbalance based on the incompatibility between cis- and trans-elements and of phenotypes related to this incompatibility.
等位基因特异性单等位基因表达是一种独特的现象,也是分析基因调控的重要资源。为了研究这种现象,我们建立了新的胚胎干细胞(ES)细胞系,这些细胞系源自 F1 杂交囊胚,杂交亲本来自四个小鼠亚种(Mus musculus domesticus,C57BL/6;M. musculus molossinus,MSM/Ms;M. musculus musculus,PWK;M. musculus castaneus,HMI/Ms),并分析了每条细胞系未分化多能干细胞标志物的表达水平和核型。为了证明我们细胞系的实用性,我们以 Inpp5d 基因为例分析了其等位基因特异性表达模式。等位基因的表达依赖于亲本等位基因;这种依赖性可能是不同亚种 Inpp5d 基因顺式和反式元件之间兼容性差异的结果。使用来自四个亚种的亲本小鼠极大地增强了遗传多态性。F1 杂种 ES 细胞不仅在 Inpp5d 基因中,而且在全基因组水平上保留了这种多态性。正如我们在 Inpp5d 基因中所证明的那样,所建立的细胞系可以有助于分析基于顺式和反式元件之间不兼容性的等位基因表达失衡,以及与这种不兼容性相关的表型。