Evans Susan C, Liang Min, Amos Christopher, Gu Xiangjun, Lozano Guillermina
Department of Chemistry and Biochemistry, Ohio University, Athens, OH 45701, USA.
Mamm Genome. 2004 Jun;15(6):415-23. doi: 10.1007/s00335-004-2327-y.
The heterogeneity that occurs in the tumor spectrum and latency in Li-Fraumeni syndrome (LFS) patients with inherited mutations in p53 suggest risk modifiers at loci other than the major gene. We developed a mouse model to investigate these risk modifiers. Inbred CE/J mice, which succumb to multiple types of tumors similar to those found in LFS, were crossed with the p53-null 129/Sv (129-Trp53(tm1Tyj)) mouse. In this cross, we uncovered evidence for a genetic modifier of p53, mop1, based on an unexpected mix of genotypes in the F2 progeny from Mendelian expectations. A model in which a recessive CE/J allele in combination with p53 heterozygosity or homozygosity results in lethality most closely fits the data. Using simple-sequence length polymorphism analysis of the entire genome, we identified a putative chromosomal region for this modifier of p53 on mouse chromosome 11 centromeric to p53.
患有p53基因遗传性突变的李-佛美尼综合征(LFS)患者的肿瘤谱和潜伏期存在异质性,这表明除主要基因外其他位点存在风险修饰因子。我们构建了一个小鼠模型来研究这些风险修饰因子。将易患多种类似于LFS中发现的肿瘤类型的近交系CE/J小鼠与p53基因敲除的129/Sv(129-Trp53(tm1Tyj))小鼠进行杂交。在这个杂交实验中,基于F2后代中基因型与孟德尔预期的意外混合,我们发现了p53基因的一个遗传修饰因子mop1的证据。一个隐性CE/J等位基因与p53杂合性或纯合性相结合导致致死性的模型最符合这些数据。通过对整个基因组进行简单序列长度多态性分析,我们在小鼠11号染色体上p53着丝粒方向确定了这个p53修饰因子的一个假定染色体区域。