AI Article Synopsis

  • Prokaryotic and eukaryotic RNA polymerases can initiate transcription using short RNA segments called nanoRNAs, which may influence gene expression and transcription start sites in living cells.
  • Researchers observed this phenomenon in E. coli, showing that the use of nanoRNAs changes based on the growth phase and affects gene expression.
  • Their work challenges the traditional view that all transcription starts solely with nucleoside triphosphates, revealing nanoRNAs as a new class of regulatory small RNAs that are directly integrated into transcripts.

Article Abstract

Prokaryotic and eukaryotic RNA polymerases can use 2- to ∼4-nt RNAs, "nanoRNAs," to prime transcription initiation in vitro. It has been proposed that nanoRNA-mediated priming of transcription can likewise occur under physiological conditions in vivo and influence transcription start site selection and gene expression. However, no direct evidence of such regulation has been presented. Here we demonstrate in Escherichia coli that nanoRNAs prime transcription in a growth phase-dependent manner, resulting in alterations in transcription start site selection and changes in gene expression. We further define a sequence element that determines, in part, whether a promoter will be targeted by nanoRNA-mediated priming. By establishing that a significant fraction of transcription initiation is primed in living cells, our findings contradict the conventional model that all cellular transcription is initiated using nucleoside triphosphates (NTPs) only. In addition, our findings identify nanoRNAs as a previously undocumented class of regulatory small RNAs that function by being directly incorporated into a target transcript.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3403017PMC
http://dx.doi.org/10.1101/gad.192732.112DOI Listing

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