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抗性小鼠品系中肺癌发生的复杂遗传控制

Complex genetic control of lung tumorigenesis in resistant mice strains.

作者信息

Dassano Alice, Pintarelli Giulia, Cotroneo Chiara E, Pettinicchio Angela, Forcati Elena, De Cecco Loris, Borrego Andrea, Colombo Francesca, Dragani Tommaso A, Manenti Giacomo

机构信息

Department of Predictive and Preventive Medicine, Fondazione IRCCS, Istituto Nazionale dei Tumori, Milan, Italy.

Department of Experimental Oncology and Molecular medicine, Fondazione IRCCS, Istituto Nazionale dei Tumori, Milan, Italy.

出版信息

Cancer Sci. 2017 Nov;108(11):2281-2286. doi: 10.1111/cas.13349. Epub 2017 Oct 6.

Abstract

The SM/J mouse strain is resistant to chemically-induced lung tumorigenesis despite having a haplotype, in the pulmonary adenoma susceptibility locus (Pas1) locus, that confers tumor susceptibility in other strains. To clarify this inconsistent genotype-phenotype correlation, we crossed SM/J mice with another resistant strain and conducted genome-wide linkage analysis in the (C57BL/6J × SM/J)F2 progeny exposed to urethane to induce lung tumors. Overall, >80% of F2 mice of both sexes developed from 1 to 20 lung tumors. Genotyping of 372 F2 mice for 744 informative non-redundant SNPs dispersed over all autosomal chromosomes revealed four quantitative trait loci (QTLs) affecting lung tumor multiplicity, on chromosomes 3 (near rs13477379), 15 (rs6285067), 17 (rs33373629) and 18 (rs3706601), all with logarithm of the odds (LOD) scores >5. Four QTLs modulated total lung tumor volume, on chromosome 3 (rs13477379), 10 (rs13480702), 15 (rs6285067) and 17 (rs3682923), all with LOD scores >4. No QTL modulating lung tumor multiplicity or total volume was detected in Pas1 on chromosome 6. The present study demonstrates that the SM/J strain carries, at the Pas1 locus, the resistance allele: a finding that will facilitate identification of the Pas1 causal element. More generally, it demonstrates that lung tumorigenesis is under complex polygenic control even in a pedigree with low susceptibility to this neoplasia, suggesting that the genetics of lung tumorigenesis is much more complex than evidenced by the pulmonary adenoma susceptibility and resistance loci that have, so far, been mapped in a small number of crosses between a few inbred strains.

摘要

尽管SM/J小鼠品系在肺腺瘤易感性位点(Pas1)具有单倍型,而该单倍型在其他品系中会导致肿瘤易感性,但它对化学诱导的肺肿瘤发生具有抗性。为了阐明这种不一致的基因型-表型相关性,我们将SM/J小鼠与另一个抗性品系进行杂交,并在暴露于氨基甲酸乙酯以诱导肺肿瘤的(C57BL/6J×SM/J)F2后代中进行全基因组连锁分析。总体而言,超过80%的F2雌雄小鼠长出了1至20个肺肿瘤。对分布在所有常染色体上的744个信息丰富的非冗余单核苷酸多态性(SNP)对372只F2小鼠进行基因分型,发现影响肺肿瘤多样性的四个数量性状位点(QTL),分别位于3号染色体(靠近rs13477379)、15号染色体(rs6285067)、17号染色体(rs33373629)和18号染色体(rs3706601)上,所有这些位点的优势对数(LOD)得分均>5。四个QTL调节肺肿瘤总体积,分别位于3号染色体(rs13477379)、10号染色体(rs13480702)、15号染色体(rs6285067)和17号染色体(rs3682923)上,所有这些位点的LOD得分均>4。在6号染色体的Pas1位点未检测到调节肺肿瘤多样性或总体积的QTL。本研究表明,SM/J品系在Pas1位点携带抗性等位基因:这一发现将有助于鉴定Pas1的因果元件。更普遍地说,它表明即使在对这种肿瘤形成低易感性的谱系中,肺肿瘤发生也受复杂的多基因控制,这表明肺肿瘤发生的遗传学比迄今为止在少数近交系之间的少数杂交中所绘制的肺腺瘤易感性和抗性位点所证明的要复杂得多。

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