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真核生物启动子和增强子转录方向性的决定因素。

Determinants of promoter and enhancer transcription directionality in metazoans.

机构信息

Berlin Institute for Medical Systems Biology, Max Delbrück Center for Molecular Medicine, 13125, Berlin, Germany.

Department of Biology, Humboldt Universitaet zu Berlin, 10115, Berlin, Germany.

出版信息

Nat Commun. 2018 Oct 26;9(1):4472. doi: 10.1038/s41467-018-06962-z.

Abstract

Divergent transcription from promoters and enhancers is pervasive in many species, but it remains unclear if it is a general feature of all eukaryotic cis regulatory elements. To address this, here we define cis regulatory elements in C. elegans, D. melanogaster and H. sapiens and investigate the determinants of their transcription directionality. In all three species, we find that divergent transcription is initiated from two separate core promoter sequences and promoter regions display competition between histone modifications on the + 1 and -1 nucleosomes. In contrast, promoter directionality, sequence composition surrounding promoters, and positional enrichment of chromatin states, are different across species. Integrative models of H3K4me3 levels and core promoter sequence are highly predictive of promoter and enhancer directionality and support two directional classes, skewed and balanced. The relative importance of features to these models are clearly distinct for promoters and enhancers. Differences in regulatory architecture within and between metazoans are therefore abundant, arguing against a unified eukaryotic model.

摘要

在许多物种中,从启动子和增强子中转录是普遍存在的,但目前尚不清楚这是否是所有真核顺式调控元件的一般特征。为了解决这个问题,我们在这里定义了秀丽隐杆线虫、黑腹果蝇和人类中的顺式调控元件,并研究了它们转录方向性的决定因素。在这三个物种中,我们发现从两个独立的核心启动子序列起始的发散转录,并且启动子区域显示在+1 和-1 核小体上的组蛋白修饰之间存在竞争。相比之下,启动子的方向性、启动子周围的序列组成以及染色质状态的位置富集在不同物种中是不同的。H3K4me3 水平和核心启动子序列的综合模型高度预测启动子和增强子的方向性,并支持两个有向类别,即偏斜和平衡。这些模型中特征的相对重要性对于启动子和增强子显然是不同的。因此,后生动物内部和之间的调控结构存在大量差异,这表明不存在统一的真核模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/326d/6203779/4a126c46e32e/41467_2018_6962_Fig1_HTML.jpg

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