Literature DB >> 21700226

NanoRNAs prime transcription initiation in vivo.

Seth R Goldman1, Josh S Sharp, Irina O Vvedenskaya, Jonathan Livny, Simon L Dove, Bryce E Nickels.   

Abstract

It is often presumed that, in vivo, the initiation of RNA synthesis by DNA-dependent RNA polymerases occurs using NTPs alone. Here, using the model Gram-negative bacterium Pseudomonas aeruginosa, we demonstrate that depletion of the small-RNA-specific exonuclease, Oligoribonuclease, causes the accumulation of oligoribonucleotides 2 to ∼4 nt in length, "nanoRNAs," which serve as primers for transcription initiation at a significant fraction of promoters. Widespread use of nanoRNAs to prime transcription initiation is coupled with global alterations in gene expression. Our results, obtained under conditions in which the concentration of nanoRNAs is artificially elevated, establish that small RNAs can be used to initiate transcription in vivo, challenging the idea that all cellular transcription occurs using only NTPs. Our findings further suggest that nanoRNAs could represent a distinct class of functional small RNAs that can affect gene expression through direct incorporation into a target RNA transcript rather than through a traditional antisense-based mechanism.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21700226      PMCID: PMC3130991          DOI: 10.1016/j.molcel.2011.06.005

Source DB:  PubMed          Journal:  Mol Cell        ISSN: 1097-2765            Impact factor:   17.970


  43 in total

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2.  Transcript-assisted transcriptional proofreading.

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3.  The bacterial enzyme RppH triggers messenger RNA degradation by 5' pyrophosphate removal.

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4.  The transcription unit architecture of the Escherichia coli genome.

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5.  Hydrolysis of the 5'-p-nitrophenyl ester of TMP by oligoribonucleases (ORN) from Escherichia coli, Mycobacterium smegmatis, and human.

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Journal:  Protein Expr Purif       Date:  2007-10-17       Impact factor: 1.650

Review 6.  Regulation of pyrimidine biosynthetic gene expression in bacteria: repression without repressors.

Authors:  Charles L Turnbough; Robert L Switzer
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Review 7.  Monitoring abortive initiation.

Authors:  Lilian M Hsu
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8.  H-NS family members function coordinately in an opportunistic pathogen.

Authors:  Sandra Castang; Heather R McManus; Keith H Turner; Simon L Dove
Journal:  Proc Natl Acad Sci U S A       Date:  2008-11-21       Impact factor: 11.205

9.  Degradation of nanoRNA is performed by multiple redundant RNases in Bacillus subtilis.

Authors:  Ming Fang; Wencke-Maria Zeisberg; Ciaran Condon; Vasily Ogryzko; Antoine Danchin; Undine Mechold
Journal:  Nucleic Acids Res       Date:  2009-06-24       Impact factor: 16.971

10.  Direct detection of abortive RNA transcripts in vivo.

Authors:  Seth R Goldman; Richard H Ebright; Bryce E Nickels
Journal:  Science       Date:  2009-05-15       Impact factor: 47.728

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  61 in total

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2.  Analysis of Bacterial Transcription by "Massively Systematic Transcript End Readout," MASTER.

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3.  Oligoribonuclease Contributes to Tolerance to Aminoglycoside and β-Lactam Antibiotics by Regulating KatA in Pseudomonas aeruginosa.

Authors:  Bin Xia; Mei Li; Zhenyang Tian; Gukui Chen; Chang Liu; Yushan Xia; Yongxin Jin; Fang Bai; Zhihui Cheng; Shouguang Jin; Weihui Wu
Journal:  Antimicrob Agents Chemother       Date:  2019-05-24       Impact factor: 5.191

4.  Preparation of cDNA libraries for high-throughput RNA sequencing analysis of RNA 5' ends.

Authors:  Irina O Vvedenskaya; Seth R Goldman; Bryce E Nickels
Journal:  Methods Mol Biol       Date:  2015

5.  A self-lysis pathway that enhances the virulence of a pathogenic bacterium.

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6.  A new way to start: nanoRNA-mediated priming of transcription initiation.

Authors:  Bryce E Nickels
Journal:  Transcription       Date:  2012-11-01

7.  The primary transcriptome of barley chloroplasts: numerous noncoding RNAs and the dominating role of the plastid-encoded RNA polymerase.

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Review 8.  Redefining fundamental concepts of transcription initiation in bacteria.

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Review 9.  Pervasive transcription: illuminating the dark matter of bacterial transcriptomes.

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10.  Regulation of the CRISPR-Associated Genes by Rv2837c (CnpB) via an Orn-Like Activity in Tuberculosis Complex Mycobacteria.

Authors:  Yang Zhang; Jun Yang; Guangchun Bai
Journal:  J Bacteriol       Date:  2018-03-26       Impact factor: 3.490

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