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Synthetic lethality across normal tissues is strongly associated with cancer risk, onset, and tumor suppressor specificity

机译:正常组织的合成致死性与癌症风险,发病和肿瘤抑制剂特异性强烈有关

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摘要

Various characteristics of cancers exhibit tissue specificity, including lifetime cancer risk, onset age, and cancer driver genes. Previously, the large variation in cancer risk across human tissues was found to strongly correlate with the number of stem cell divisions and abnormal DNA methylation levels. Here, we study the role of synthetic lethality in cancer risk. Analyzing normal tissue transcriptomics data in the Genotype-Tissue Expression project, we quantify the extent of co-inactivation of cancer synthetic lethal (cSL) gene pairs and find that normal tissues with more down-regulated cSL gene pairs have lower and delayed cancer risk. Consistently, more cSL gene pairs become up-regulated in cells treated by carcinogens and throughout premalignant stages in vivo. We also show that the tissue specificity of numerous tumor suppressor genes is associated with the expression of their cSL partner genes across normal tissues. Overall, our findings support the possible role of synthetic lethality in tumorigenesis.
机译:癌症的各种特征表现出组织特异性,包括寿命癌症风险,发病年龄和癌症驾驶基因。以前,发现人体组织中癌症风险的大变化与干细胞分裂的数量和异常DNA甲基化水平强烈相关。在这里,我们研究了合成致死性在癌症风险中的作用。分析基因型组织表达项目中的正常组织转录组织数据,我们量化癌症合成致死(CSL)基因对的共同失活的程度,并发现具有更多下调的CSL基因对的正常组织具有较低和延迟的癌症风险。一致地,更多CSL基因对在致癌物质处理的细胞和体内预寄生阶段的细胞中进行上调。我们还表明,许多肿瘤抑制基因的组织特异性与在正常组织中的CSL合作基因的表达相关。总体而言,我们的研究结果支持合成致死性在肿瘤发生中的可能作用。

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