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转录因子结合变异的功能后果。

The functional consequences of variation in transcription factor binding.

作者信息

Cusanovich Darren A, Pavlovic Bryan, Pritchard Jonathan K, Gilad Yoav

机构信息

Department of Human Genetics, University of Chicago, Chicago, Illinois, United States of America.

Department of Human Genetics, University of Chicago, Chicago, Illinois, United States of America; Howard Hughes Medical Institute, University of Chicago, Chicago, Illinois, United States of America.

出版信息

PLoS Genet. 2014 Mar 6;10(3):e1004226. doi: 10.1371/journal.pgen.1004226. eCollection 2014 Mar.

Abstract

One goal of human genetics is to understand how the information for precise and dynamic gene expression programs is encoded in the genome. The interactions of transcription factors (TFs) with DNA regulatory elements clearly play an important role in determining gene expression outputs, yet the regulatory logic underlying functional transcription factor binding is poorly understood. Many studies have focused on characterizing the genomic locations of TF binding, yet it is unclear to what extent TF binding at any specific locus has functional consequences with respect to gene expression output. To evaluate the context of functional TF binding we knocked down 59 TFs and chromatin modifiers in one HapMap lymphoblastoid cell line. We then identified genes whose expression was affected by the knockdowns. We intersected the gene expression data with transcription factor binding data (based on ChIP-seq and DNase-seq) within 10 kb of the transcription start sites of expressed genes. This combination of data allowed us to infer functional TF binding. Using this approach, we found that only a small subset of genes bound by a factor were differentially expressed following the knockdown of that factor, suggesting that most interactions between TF and chromatin do not result in measurable changes in gene expression levels of putative target genes. We found that functional TF binding is enriched in regulatory elements that harbor a large number of TF binding sites, at sites with predicted higher binding affinity, and at sites that are enriched in genomic regions annotated as "active enhancers."

摘要

人类遗传学的一个目标是了解基因组中如何编码精确且动态的基因表达程序的信息。转录因子(TFs)与DNA调控元件的相互作用在决定基因表达输出方面显然起着重要作用,然而,功能性转录因子结合背后的调控逻辑却知之甚少。许多研究都集中在表征TF结合的基因组位置上,但尚不清楚在任何特定位点的TF结合在多大程度上对基因表达输出具有功能影响。为了评估功能性TF结合的背景情况,我们在一种HapMap淋巴母细胞系中敲低了59种TF和染色质修饰因子。然后我们鉴定出其表达受敲低影响的基因。我们将基因表达数据与表达基因转录起始位点10 kb内的转录因子结合数据(基于ChIP-seq和DNase-seq)进行交叉分析。这种数据组合使我们能够推断功能性TF结合。使用这种方法,我们发现,在敲低某个因子后,只有一小部分被该因子结合的基因发生了差异表达,这表明TF与染色质之间的大多数相互作用不会导致假定靶基因的基因表达水平发生可测量的变化。我们发现,功能性TF结合在含有大量TF结合位点的调控元件中、在预测具有较高结合亲和力的位点以及在注释为“活性增强子”的基因组区域中富集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7076/3945204/98b49f3bcc21/pgen.1004226.g001.jpg

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