首页> 外文期刊>Molecular Carcinogenesis >Modeling gene-environment interactions in oral cavity and esophageal cancers demonstrates a role for the p53 R72P polymorphism in modulating susceptibility
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Modeling gene-environment interactions in oral cavity and esophageal cancers demonstrates a role for the p53 R72P polymorphism in modulating susceptibility

机译:对口腔和食道癌中的基因-环境相互作用进行建模证明了p53 R72P多态性在调节药敏性中的作用

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摘要

A large number of epidemiological studies have linked a common single-nucleotide polymorphism (SNP) in the human p53 gene to risk for developing a variety of cancers. This SNP encodes either an arginine or proline at position 72 (R72P) of the p53 protein, which can alter the apoptotic activity of p53 via transcriptional and non-transcriptional mechanisms. This SNP has also been reported to modulate the development of human papilloma virus (HPV)-driven cancers through differential targeting of the p53 variant proteins by the E6 viral oncoprotein. Mouse models for the p53 R72P polymorphism have recently been developed but a role for this SNP in modifying cancer risk in response to viral and chemical carcinogens has yet to be established experimentally. Here, we demonstrate that the p53 R72P polymorphism modulates the hyperprolferative, apoptotic and inflammatory phenotypes caused by expression of the HPV16 E6 and E7 oncoproteins. Moreover, the R72P SNP also modifies the carcinogenic response to the chemical carcinogen 4NQO, in the presence and absence of the HPV16 transgene. Our findings confirm several human epidemiological studies associating the codon 72 proline variant with increased risk for certain cancers but also suggest that there are tissue-specific differences in how the R72P polymorphism influences the response to environmental carcinogens.
机译:大量的流行病学研究已将人类p53基因中常见的单核苷酸多态性(SNP)与罹患各种癌症的风险联系在一起。该SNP在p53蛋白的72位(R72P)处编码精氨酸或脯氨酸,可通过转录和非转录机制改变p53的凋亡活性。还已经报道该SNP通过E6病毒癌蛋白对p53变体蛋白的不同靶向来调节人乳头瘤病毒(HPV)驱动的癌症的发展。 p53 R72P多态性的小鼠模型最近已经开发出来,但该SNP在改变病毒和化学致癌物对癌症的风险中的作用尚待实验确定。在这里,我们证明p53 R72P多态性可调节由HPV16 E6和E7癌蛋白的表达引起的过度增殖,凋亡和炎性表型。此外,在存在和不存在HPV16转基因的情况下,R72P SNP还可修饰对化学致癌物4NQO的致癌反应。我们的发现证实了一些人类流行病学研究,将72号密码子脯氨酸变体与某些癌症的风险增加相关,但也表明R72P多态性如何影响对环境致癌物的反应存在组织特异性差异。

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