Models of human core transcriptional regulatory circuitries.

Abstract:

:A small set of core transcription factors (TFs) dominates control of the gene expression program in embryonic stem cells and other well-studied cellular models. These core TFs collectively regulate their own gene expression, thus forming an interconnected auto-regulatory loop that can be considered the core transcriptional regulatory circuitry (CRC) for that cell type. There is limited knowledge of core TFs, and thus models of core regulatory circuitry, for most cell types. We recently discovered that genes encoding known core TFs forming CRCs are driven by super-enhancers, which provides an opportunity to systematically predict CRCs in poorly studied cell types through super-enhancer mapping. Here, we use super-enhancer maps to generate CRC models for 75 human cell and tissue types. These core circuitry models should prove valuable for further investigating cell-type-specific transcriptional regulation in healthy and diseased cells.

journal_name

Genome Res

journal_title

Genome research

authors

Saint-André V,Federation AJ,Lin CY,Abraham BJ,Reddy J,Lee TI,Bradner JE,Young RA

doi

10.1101/gr.197590.115

subject

Has Abstract

pub_date

2016-03-01 00:00:00

pages

385-96

issue

3

eissn

1088-9051

issn

1549-5469

pii

gr.197590.115

journal_volume

26

pub_type

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