首页> 外文期刊>Nucleic Acids Research >Human single-nucleotide polymorphisms alter p53 sequence-specific binding at gene regulatory elements.
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Human single-nucleotide polymorphisms alter p53 sequence-specific binding at gene regulatory elements.

机译:人单核苷酸多态性会改变基因调控元件上的p53序列特异性结合。

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p53 coordinates the expression of an intricate network of genes in response to stress signals. Sequence-specific DNA binding is essential for p53-mediated tumor suppression. We evaluated the impact of single-nucleotide polymorphisms (SNPs) in p53 response elements (p53RE) on DNA binding and gene expression in response to DNA damage. Using a bioinformatics approach based on incorporating p53 binding strength into a position weight matrix, we selected 32 SNPs in putative and validated p53REs. The microsphere assay for protein-DNA binding (MAPD) and allele-specific expression analysis was employed to assess the impact of SNPs on p53-DNA binding and gene expression, respectively. Comparing activated p53 binding in nuclear extracts from doxorubicin- or ionizing radiation (IR)-treated human cells, we observed little difference in binding profiles. Significant p53 binding was observed for most polymorphic REs and several displayed binding comparable to the p21 RE. SNP alleles predicted to lower p53 binding indeed reduced binding in 25 of the 32 sequences. Chromatin immunoprecipitation-sequencing in lymphoblastoid cells confirmed p53 binding to seven polymorphic p53 REs in response to doxorubicin. In addition, five polymorphisms were associated with altered gene expression following doxorubicin treatment. Our findings demonstrate an effective strategy to identify and evaluate SNPs that may alter p53-mediated stress responses.
机译:p53协调响应压力信号的复杂基因网络的表达。序列特异性DNA结合对于p53介导的肿瘤抑制至关重要。我们评估了p53反应元件(p53RE)中的单核苷酸多态性(SNP)对DNA结合和响应DNA损伤的基因表达的影响。使用基于将p53结合强度整合到位置权重矩阵中的生物信息学方法,我们在推定并验证的p53RE中选择了32个SNP。采用微球蛋白-DNA结合检测(MAPD)和等位基因特异性表达分析,分别评估SNP对p53-DNA结合和基因表达的影响。比较来自阿霉素或电离辐射(IR)处理的人类细胞的核提取物中活化的p53结合,我们观察到结合谱几乎没有差异。对于大多数多态RE,观察到明显的p53结合,并且显示出与p21 RE相当的结合。预测降低p53结合的SNP等位基因确实降低了32个序列中的25个的结合。淋巴母细胞中的染色质免疫沉淀测序证实p53与七种多态性p53 RE结合,这是对阿霉素的反应。此外,阿霉素治疗后,五种多态性与基因表达的改变有关。我们的发现证明了一种有效的策略来鉴定和评估可能改变p53介导的应激反应的SNP。

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