Nature Protocols 2015-07-01

Genome-wide profiling of in vivo RNA structure at single-nucleotide resolution using structure-seq.

Yiliang Ding, Chun Kit Kwok, Yin Tang, Philip C Bevilacqua, Sarah M Assmann

Index: Nat. Protoc. 10 , 1050-66, (2015)

Full Text: HTML

Abstract

Structure-seq is a high-throughput and quantitative method that provides genome-wide information on RNA structure at single-nucleotide resolution. Structure-seq can be performed both in vivo and in vitro to study RNA structure-function relationships, RNA regulation of gene expression and RNA processing. Structure-seq can be carried out by an experienced molecular biologist with a basic understanding of bioinformatics. Structure-seq begins with chemical RNA structure probing under single-hit kinetics conditions. Certain chemical modifications, e.g., methylation of the Watson-Crick face of unpaired adenine and cytosine residues by dimethyl sulfate, result in a stop in reverse transcription. Modified RNA is then subjected to reverse transcription using random hexamer primers, which minimizes 3' end bias; reverse transcription proceeds until it is blocked by a chemically modified residue. Resultant cDNAs are amplified by adapter-based PCR and subjected to high-throughput sequencing, subsequently allowing retrieval of the structural information on a genome-wide scale. In contrast to classical methods that provide information only on individual transcripts, a single structure-seq experiment provides information on tens of thousands of RNA structures in ∼1 month. Although the procedure described here is for Arabidopsis thaliana seedlings in vivo, structure-seq is widely applicable, thereby opening new avenues to explore RNA structure-function relationships in living organisms.


Related Compounds

  • Chloroform
  • sodium chloride
  • Succimer
  • Urea
  • HEPES
  • 3-Methyl-1-butanol
  • Dimethyl sulfate
  • SODIUM CHLOR...
  • Phenol
  • potassium chloride

Related Articles:

A survey of the interactome of Kaposi's sarcoma-associated herpesvirus ORF45 revealed its binding to viral ORF33 and cellular USP7, resulting in stabilization of ORF33 that is required for production of progeny viruses.

2015-05-01

[J. Virol. 89(9) , 4918-31, (2015)]

Aqueous-core PEG-coated PLA nanocapsules for an efficient entrapment of water soluble anticancer drugs and a smart therapeutic response.

2015-01-01

[Eur. J. Pharm. Biopharm. 89 , 30-9, (2015)]

SSX2 is a novel DNA-binding protein that antagonizes polycomb group body formation and gene repression.

2015-01-01

[Nucleic Acids Res. 42(18) , 11433-46, (2014)]

The dynamics of giant unilamellar vesicle oxidation probed by morphological transitions.

2014-10-01

[Biochim. Biophys. Acta 1838(10) , 2615-24, (2014)]

The dual FAAH/MAGL inhibitor JZL195 has enhanced effects on endocannabinoid transmission and motor behavior in rats as compared to those of the MAGL inhibitor JZL184.

2014-09-01

[Pharmacol. Biochem. Behav. 124 , 153-9, (2014)]

More Articles...