4.8 Article

RNA Exosome-Regulated Long Non-Coding RNA Transcription Controls Super-Enhancer Activity

Journal

CELL
Volume 161, Issue 4, Pages 774-789

Publisher

CELL PRESS
DOI: 10.1016/j.cell.2015.04.034

Keywords

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Funding

  1. NIH [1DP2OD008651-01, 1R01CA185486-01, 1R01CA179044-01A1, 1U54CA121852-05, F31AI098411-01A1]
  2. NIAID [1R01AI099195-01A1]

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We have ablated the cellular RNA degradation machinery in differentiated B cells and pluripotent embryonic stem cells (ESCs) by conditional mutagenesis of core (Exosc3) and nuclear RNase (Exosc10) components of RNA exosome and identified a vast number of long non-coding RNAs (lncRNAs) and enhancer RNAs (eRNAs) with emergent functionality. Unexpectedly, eRNA-expressing regions accumulate R-loop structures upon RNA exosome ablation, thus demonstrating the role of RNA exosome in resolving deleterious DNA/RNA hybrids arising from active enhancers. We have uncovered a distal divergent eRNA-expressing element (lncRNA-CSR) engaged in long-range DNA interactions and regulating IgH 30 regulatory region super-enhancer function. CRISPR-Cas9-mediated ablation of lncRNA-CSR transcription decreases its chromosomal looping-mediated association with the IgH 30 regulatory region super-enhancer and leads to decreased class switch recombination efficiency. We propose that the RNA exosome protects divergently transcribed lncRNA expressing enhancers by resolving deleterious transcription-coupled secondary DNA structures, while also regulating long-range super-enhancer chromosomal interactions important for cellular function.

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