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Common genetic variants in the TP53 pathway and their impact on cancer

机译:TP53途径中常见的遗传变异及其对癌症的影响

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The TP53 gene is well known to be the most frequently mutated gene in human cancer. In addition to mutations, there are >20 different coding region single-nucleotide polymorphisms (SNPs) in the TP53 gene, as well as SNPs in MDM2, the negative regulator of p53. Several of these SNPs are known to alter p53 pathway function. This makes p53 rather unique among cancer-critical genes, e.g. the coding regions of other cancer-critical genes like Ha-Ras, RB, and PI3KCA do not have non-synonymous coding region SNPs that alter their function in cancer. The next frontier in p53 biology will consist of probing which of these coding region SNPs are moderately or strongly pathogenic and whether they influence cancer risk and the efficacy of cancer therapy. The challenge after that will consist of determining whether we can tailor chemotherapy to correct the defects for each of these variants. Here we review the SNPs in TP53 and MDM2 that show the most significant impact on cancer and other diseases. We also propose avenues for how this information can be used to better inform personalized medicine approaches to cancer and other diseases.
机译:众所周知,TP53基因是人癌中最常见的基因。除了突变之外,TP53基因中存在> 20种不同的编码区单核苷酸多态性(SNP),以及MDM2中的SNP,P53的负调节剂。已知几个这些SNPS改变P53途径功能。这使得P53在癌症关键基因中具有独特的独特,例如,其他癌症关键基因的编码区域,如ha-ras,rb和pi3kca没有非同义的编码区SNP,可改变其在癌症中的功能。 P53生物学中的下一个前沿将包括探测这些编码区SNP中的哪一个是适度的或强烈的致病性,以及它们是否影响癌症风险和癌症治疗的疗效。挑战之后,该挑战将包括确定我们是否可以定制化疗以纠正每个变体中的每种变种的缺陷。在这里,我们在TP53和MDM2中审查了SNP,对癌症和其他疾病产生了最显着的影响。我们还提出了如何用于更好地通知癌症和其他疾病的个性化药物方法的方式的途径。

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