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Multiplex enhancer-reporter assays uncover unsophisticated TP53 enhancer logic

机译:多重增强子-报告子检测揭示了不复杂的TP53增强子逻辑

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摘要

Transcription factors regulate their target genes by binding to regulatory regions in the genome. Although the binding preferences of TP53 are known, it remains unclear what distinguishes functional enhancers from nonfunctional binding. In addition, the genome is scattered with recognition sequences that remain unoccupied. Using two complementary techniques of multiplex enhancer-reporter assays, we discovered that functional enhancers could be discriminated from nonfunctional binding events by the occurrence of a single TP53 canonical motif. By combining machine learning with a meta-analysis of TP53 ChIP-seq data sets, we identified a core set of more than 1000 responsive enhancers in the human genome. This TP53 cistrome is invariably used between cell types and experimental conditions, whereas differences among experiments can be attributed to indirect nonfunctional binding events. Our data suggest that TP53 enhancers represent a class of unsophisticated cell-autonomous enhancers containing a single TP53 binding site, distinct from complex developmental enhancers that integrate signals from multiple transcription factors.
机译:转录因子通过与基因组中的调控区结合来调控其靶基因。尽管已知TP53的结合偏好,但尚不清楚什么将功能增强剂与非功能结合区分开。另外,基因组散布着未被占用的识别序列。使用多重增强子-报告子测定法的两种互补技术,我们发现可以通过单个TP53规范基序的出现将功能增强子与非功能性结合事件区分开。通过将机器学习与TP53 ChIP-seq数据集的荟萃分析相结合,我们确定了人类基因组中1000多个响应增强子的核心集合。在细胞类型和实验条件之间始终使用该TP53病态,而实验之间的差异可归因于间接的非功能性结合事件。我们的数据表明TP53增强子代表了一类不复杂的细胞自治增强子,包含单个TP53结合位点,与整合了多个转录因子信号的复杂发育增强子不同。

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