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首页> 外文期刊>Oncogene >Predisposition to mouse thymic lymphomas in response to ionizing radiation depends on variant alleles encoding metal-responsive transcription factor-1 (Mtf-1)
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Predisposition to mouse thymic lymphomas in response to ionizing radiation depends on variant alleles encoding metal-responsive transcription factor-1 (Mtf-1)

机译:电离辐射对小鼠胸腺淋巴瘤的易感性取决于编码金属反应性转录因子-1(Mtf-1)的变异等位基因

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摘要

Genetic predisposition to cancers is significant to public health because a high proportion of cancers probably arise in a susceptible human subpopulation. Using a mouse model of -ray-induced thymic lymphomas, we performed linkage analysis and haplotype mapping that suggested Mtf-1, metal-responsive transcription factor-1 (Mtf-1), as a candidate lymphoma susceptibility gene. Sequence analysis revealed a polymorphism of Mtf-1 that alters the corresponding amino acid at position 424 in the proline-rich domain from a serine in susceptibility strains to proline in resistant strains. The transcriptional activity of Mtf-1 encoding serine and proline was compared by transfecting the DNA to Mtf-1-null cells, and the change to proline conferred a higher metal responsiveness in transfections. Furthermore, the resistant congenic strains possessing the Mtf-1 allele of proline type exhibited higher radiation inducibility of target genes than susceptible background strains having the Mtf-1 allele of serine type. Since products of the targets such as metallothionein are able to suppress cellular stresses generated by irradiation, these results suggest that highly inducible strains having Mtf-1 of proline type are refractory to radiation effects and hence are resistant to lymphoma development.
机译:癌症的遗传易感性对公共卫生至关重要,因为很大一部分癌症可能来自于易感人群。使用射线诱导的胸腺淋巴瘤的小鼠模型,我们进行了连锁分析和单倍型作图,表明Mtf-1,金属反应性转录因子-1(Mtf-1)作为候选淋巴瘤易感基因。序列分析揭示了Mtf-1的多态性,其改变了富含脯氨酸的结构域中第424位的相应氨基酸,从易感菌株中的丝氨酸变为抗性菌株中的脯氨酸。通过将DNA转染到Mtf-1-null细胞中来比较编码Mtf-1的丝氨酸和脯氨酸的转录活性,并且脯氨酸的改变赋予了转染更高的金属响应性。此外,具有脯氨酸型Mtf-1等位基因的抗性同基因菌株比具有丝氨酸型Mtf-1等位基因的易感背景菌株表现出更高的靶基因辐射诱导能力。由于诸如金属硫蛋白的靶标产物能够抑制由辐射产生的细胞应激,因此这些结果表明,脯氨酸型Mtf-1的高诱导菌株对辐射作用具有抗性,因此可抵抗淋巴瘤的发展。

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