Single-Molecule Imaging Reveals a Switch between Spurious and Functional ncRNA Transcription.

Mol Cell

Laboratory of Receptor Biology and Gene Expression, National Cancer Institute, NIH, Bethesda, MD 20892, USA. Electronic address:

Published: November 2015

AI Article Synopsis

  • Eukaryotic transcription produces a lot of non-coding RNAs, but it’s unclear if this is useful or just random noise.
  • In yeast cells, the GAL10 non-coding RNA can either have a functional role or be non-functional depending on certain conditions, particularly during galactose induction.
  • When GAL10 isn't induced, the transcription of its non-coding RNA helps prevent unnecessary transcription of other genes; disrupting this process leads to problems in gene regulation and cellular fitness.

Article Abstract

Eukaryotic transcription is pervasive, and many of the resulting RNAs are non-coding. It is unknown whether ubiquitous transcription is functional or simply reflects stochastic transcriptional noise. By single-molecule visualization of the dynamic interplay between coding and non-coding transcription at the GAL locus in living yeast cells, we show that antisense GAL10 ncRNA transcription can switch between functional and spurious under different conditions. During galactose induction, GAL10 sense transcription occurs in short stochastic bursts, which are unaffected by transcription of antisense GAL10 ncRNA, even when both are present simultaneously at the same locus. In contrast, when GAL10 is not induced, ncRNA transcription is critical to prevent transcriptional leakage of GAL1 and GAL10. Suppression of ncRNA transcription by strand-specific CRISPR/dCas9 results in transcriptional leakage of the inducer GAL1, leading to a more sensitive transcription activation threshold, an alteration of metabolic switching, and a fitness defect in competition experiments.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4656089PMC
http://dx.doi.org/10.1016/j.molcel.2015.09.028DOI Listing

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