Turker M S, Stambrook P J, Tischfield J A, Smith A C, Martin G M
Department of Pathology, University of Washington, Seattle 98195.
Somat Cell Mol Genet. 1989 Mar;15(2):159-66. doi: 10.1007/BF01535077.
Southern blot analysis reveals two distinct adenine phosphoribosyltransferase (APRT) alleles in the P-19 mouse teratocarcinoma cell line. One allele is identical to that observed in common laboratory mouse strains (Mus musculus domesticus). The restriction enzyme site variations between the two alleles occur in sequences located both upstream and downstream of the APRT gene, but not within it. Although the P-19 cell line was established from a C3H strain embryo (Mus musculus domesticus), a sixth generation ancestor of this embryo was a feral mouse (Mus musculus musculus). The restriction pattern of the variant APRT allele in P-19 is identical to that of a feral-derived Mus musculus musculus animal, establishing the origin of this allele in the P-19 cell line. A third, distinct APRT allele was found in a Mus spretus feral-derived mouse. Exploiting the differences between the two APRT alleles in the P-19 cell line, we have demonstrated their sequential loss in APRT-deficient clones.
Southern印迹分析显示,在P-19小鼠畸胎瘤细胞系中存在两个不同的腺嘌呤磷酸核糖转移酶(APRT)等位基因。其中一个等位基因与常见实验室小鼠品系(小家鼠)中观察到的等位基因相同。两个等位基因之间的限制性酶切位点变异发生在APRT基因上下游的序列中,但不在基因内部。尽管P-19细胞系是从C3H品系胚胎(小家鼠)建立的,但该胚胎的第六代祖先却是一只野生小鼠(小家鼠)。P-19中变异APRT等位基因的限制性图谱与一只野生小家鼠的图谱相同,确定了该等位基因在P-19细胞系中的起源。在一只野生西班牙小鼠中发现了第三个不同的APRT等位基因。利用P-19细胞系中两个APRT等位基因之间的差异,我们证明了它们在APRT缺陷克隆中依次丢失。