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Tgfb1的基因变异体作为小鼠皮肤肿瘤易感性的上下文依赖性修饰因子。

Genetic variants of Tgfb1 act as context-dependent modifiers of mouse skin tumor susceptibility.

作者信息

Mao Jian-Hua, Saunier Elise F, de Koning John P, McKinnon Margaret M, Higgins Mamie Nakijama, Nicklas Kathy, Yang Hai-Tao, Balmain Allan, Akhurst Rosemary J

机构信息

Cancer Research Institute, Comprehensive Cancer Center, Department of Biochemistry, University of California, San Francisco, CA 94143-0875, USA.

出版信息

Proc Natl Acad Sci U S A. 2006 May 23;103(21):8125-30. doi: 10.1073/pnas.0602581103. Epub 2006 May 15.

Abstract

The human TGFB1 gene is polymorphic, and genetic variants are associated with altered cancer risk. However, human genetic association studies have had variable outcomes because TGFbeta1 action is context-dependent. We used the murine skin model of chemical carcinogenesis in genetic linkage analysis of three independent Mus musculus NIH/Ola x (Mus spretus x M. musculus NIH/Ola)F1 backcrosses, to identify a skin tumor susceptibility locus, Skts14, on proximal chromosome 7. Tgfb1 maps at the peak of linkage. The mouse Tgfb1 gene is polymorphic, resulting in cis-regulated differential allelic mRNA expression between M. spretus and M. musculus in F1 mouse skin. This phenomenon is reflected in differential phospho-SMAD2 levels, downstream of TGFbeta signaling, between these two mouse species. In normal F1 mouse skin, the Tgfb1SPR allele is expressed at higher levels than the Tgfb1NIH allele, and this differential is accentuated by phorbol 12-myristate 13-acetate treatment. In benign F1 papillomas, this imbalance is reversed, possibly by selection against expression of a hyperactive Tgfb1SPR allele in TGFbeta growth-responsive tumors. We demonstrate that skin tumor susceptibility is altered by Tgfb1 gene dosage, but that manifestation of Tgfb1-linked skin tumor susceptibility in M. musculus NIH/Ola x (M. spretus x M. musculus NIH/Ola)F1 backcross mice depends on interactions with another unlinked tumor modifying locus, Skts15, that overlaps Tgfbm3 on chromosome 12. These findings illustrate the power of complex genetic interactions in determining disease outcome and have major implications to the assessment of disease risk in individuals harboring variant TGFB1 alleles.

摘要

人类TGFB1基因具有多态性,其基因变异与癌症风险改变相关。然而,由于TGFβ1的作用具有上下文依赖性,人类基因关联研究的结果并不一致。我们利用化学致癌的小鼠皮肤模型,对三个独立的小家鼠NIH/Ola×(西班牙小家鼠×小家鼠NIH/Ola)F1回交群体进行遗传连锁分析,以确定位于近端7号染色体上的一个皮肤肿瘤易感位点Skts14。Tgfb1基因定位于连锁峰值处。小鼠Tgfb1基因具有多态性,导致F1小鼠皮肤中西班牙小家鼠和小家鼠之间存在顺式调控的等位基因mRNA差异表达。这种现象反映在这两种小鼠之间TGFβ信号下游磷酸化SMAD2水平的差异上。在正常的F1小鼠皮肤中,Tgfb1SPR等位基因的表达水平高于Tgfb1NIH等位基因,佛波酯12 -肉豆蔻酸酯13 -乙酸酯处理可加剧这种差异。在良性F1乳头状瘤中,这种失衡被逆转,可能是由于在TGFβ生长反应性肿瘤中对高活性Tgfb1SPR等位基因的表达进行了选择。我们证明皮肤肿瘤易感性会因Tgfb1基因剂量而改变,但在小家鼠NIH/Ola×(西班牙小家鼠×小家鼠NIH/Ola)F1回交小鼠中,与Tgfb1相关的皮肤肿瘤易感性表现取决于与另一个不连锁的肿瘤修饰位点Skts15的相互作用,该位点与12号染色体上的Tgfbm3重叠。这些发现说明了复杂遗传相互作用在决定疾病结局中的作用,并对评估携带变异TGFB1等位基因个体的疾病风险具有重要意义。

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