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Probing the Functional Impact of Sequence Variation on p53-DNA Interactions Using a Novel Microsphere Assay for Protein-DNA Binding with Human Cell Extracts

机译:探测序列变异对p53-DNA相互作用的功能影响使用新型微球测定法与人细胞提取物进行蛋白质-DNA结合

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摘要

The p53 tumor suppressor regulates its target genes through sequence-specific binding to DNA response elements (REs). Although numerous p53 REs are established, the thousands more identified by bioinformatics are not easily subjected to comparative functional evaluation. To examine the relationship between RE sequence variation—including polymorphisms—and p53 binding, we have developed a multiplex format microsphere assay of protein-DNA binding (MAPD) for p53 in nuclear extracts. Using MAPD we measured sequence-specific p53 binding of doxorubicin-activated or transiently expressed p53 to REs from established p53 target genes and p53 consensus REs. To assess the sensitivity and scalability of the assay, we tested 16 variants of the p21 target sequence and a 62-multiplex set of single nucleotide (nt) variants of the p53 consensus sequence and found many changes in p53 binding that are not captured by current computational binding models. A group of eight single nucleotide polymorphisms (SNPs) was examined and binding profiles closely matched transactivation capability tested in luciferase constructs. The in vitro binding characteristics of p53 in nuclear extracts recapitulated the cellular in vivo transactivation capabilities for eight well-established human REs measured by luciferase assay. Using a set of 26 bona fide REs, we observed distinct binding patterns characteristic of transiently expressed wild type and mutant p53s. This microsphere assay system utilizes biologically meaningful cell extracts in a multiplexed, quantitative, in vitro format that provides a powerful experimental tool for elucidating the functional impact of sequence polymorphism and protein variation on protein/DNA binding in transcriptional networks.
机译:p53肿瘤抑制因子通过与DNA反应元件(RE)的序列特异性结合来调节其靶基因。尽管建立了许多p53 RE,但通过生物信息学鉴定的数以千计的p53 RE并不容易进行比较功能评估。为了检查RE序列变异(包括多态性)与p53结合之间的关系,我们开发了一种核仁提取物中p53的蛋白质-DNA结合(MAPD)的多重格式微球测定。使用MAPD,我们测量了阿霉素激活或瞬时表达的p53与已建立的p53靶基因和p53共有RE的RE的序列特异性p53结合。为了评估测定的灵敏度和可扩展性,我们测试了p21靶序列的16个变体和p53共有序列的62个多核苷酸组的单核苷酸(nt)变体,发现p53结合中的许多变化未被当前捕获计算绑定模型。检查了一组八个单核苷酸多态性(SNP),并在荧光素酶构建体中测试了结合谱与反式激活能力紧密匹配。核提取物中p53的体外结合特性概括了荧光素酶测定法测量的八个成熟的人RE的细胞体内反式激活能力。使用一组26个真正的RE,我们观察到了瞬时表达的野生型和突变型p53s的独特结合模式。该微球测定系统以多重,定量,体外的形式利用生物学上有意义的细胞提取物,为阐明序列多态性和蛋白质变异对转录网络中蛋白质/ DNA结合的功能性影响提供了强大的实验工具。

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