4.8 Article

Coordinated regulation of synthesis and stability of RNA during the acute TNF-induced proinflammatory response

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NATL ACAD SCIENCES
DOI: 10.1073/pnas.1219192110

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  1. University of Michigan Bioinformatics Program
  2. University of Michigan Biomedical Research Council
  3. University of Michigan Comprehensive Cancer Center
  4. University of Michigan School of Public Health via National Institute of Environmental Health Sciences [P30]
  5. Department of Defense
  6. University of Michigan Nathan Shock Center
  7. University of Michigan Office of the Vice President of Research
  8. National Cancer Institute [5R21CA150100]
  9. National Institute of Environmental Sciences [1R21ES020946]
  10. National Human Genome Research Institute [1R01HG006786]
  11. Uniting Against Lung Cancer

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Steady-state gene expression is a coordination of synthesis and decay of RNA through epigenetic regulation, transcription factors, micro RNAs (miRNAs), and RNA-binding proteins. Here, we present bromouride labeling and sequencing (Bru-Seq) and bromouridine pulse-chase and sequencing (BruChase-Seq) to assess genome-wide changes to RNA synthesis and stability in human fibroblasts at homeostasis and after exposure to the proinflammatory tumor necrosis factor (TNF). The inflammatory response in human cells involves rapid and dramatic changes in gene expression, and the Bru-Seq and BruChase-Seq techniques revealed a coordinated and complex regulation of gene expression both at the transcriptional and posttranscriptional levels. The combinatory analysis of both RNA synthesis and stability using Bru-Seq and BruChase-Seq allows for a much deeper understanding of mechanisms of gene regulation than afforded by the analysis of steady-state total RNA and should be useful in many biological settings.

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