4.8 Article

The Integrator complex controls the termination of transcription at diverse classes of gene targets

Journal

CELL RESEARCH
Volume 25, Issue 3, Pages 288-305

Publisher

SPRINGERNATURE
DOI: 10.1038/cr.2015.19

Keywords

Integrator; snRNA; histone; termination; RNA Polyermase II; processing

Categories

Funding

  1. National Health and Medical Research Council of Australia
  2. National Institutes of Health [R01-GM057587, R37-CA076584, R21-CA161108]
  3. American Cancer Society
  4. NIH [T32 CA009161]
  5. Stowers Institute for Medical Research
  6. Intramural Research Program of the National Institutes of Health, National Cancer Institute, Center for Cancer Research
  7. Frederick National Laboratory for Cancer Research, National Institutes of Health [HHSN261200800001E]

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Complexes containing INTS3 and either NABP1 or NABP2 were initially characterized in DNA damage responses, but their biochemical function remained unknown. Using affinity purifications and HIV Integration targeting-sequencing (HIT-Seq), we find that these complexes are part of the Integrator complex, which binds RNA Polymerase II and regulates specific target genes. Integrator cleaves snRNAs as part of their processing to their mature form in a mechanism that is intimately coupled with transcription termination. However, HIT-Seq reveals that Integrator also binds to the 3' end of replication-dependent histones and promoter proximal regions of genes with polyadenylated transcripts. Depletion of Integrator subunits results in transcription termination failure, disruption of histone mRNA processing, and polyadenylation of snRNAs and histone mRNAs. Furthermore, promoter proximal binding of Integrator negatively regulates expression of genes whose transcripts are normally polyadenylated. Integrator recruitment to all three gene classes is DSIF-dependent, suggesting that Integrator functions as a termination complex at DSIF-dependent RNA Polymerase II pause sites.

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