Method for the isolation and identification of mRNAs, microRNAs and protein components of ribonucleoprotein complexes from cell extracts using RIPChip

Garrett M. Dahm, Matthew M. Gubin, Joseph D. Magee, Patsharaporn Techasintana, Robert Calaluce, Ulus Atasoy

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

As a result of the development of high-throughput sequencing and efficient microarray analysis, global gene expression analysis has become an easy and readily available form of data collection. In many research and disease models however, steady state levels of target gene mRNA does not always directly correlate with steady state protein levels. Post-transcriptional gene regulation is a likely explanation of the divergence between the two. Driven by the binding of RNA Binding Proteins (RBP), post-transcriptional regulation affects mRNA localization, stability and translation by forming a Ribonucleoprotein (RNP) complex with target mRNAs. Identifying these unknown de novo mRNA targets from cellular extracts in the RNP complex is pivotal to understanding mechanisms and functions of the RBP and their resulting effect on protein output. This protocol outlines a method termed RNP immunoprecipitation-microarray (RIP-Chip), which allows for the identification of specific mRNAs associated in the ribonucleoprotein complex, under changing experimental conditions, along with options to further optimize an experiment for the individual researcher. With this important experimental tool, researchers can explore the intricate mechanisms associated with posttranscriptional gene regulation as well as other ribonucleoprotein interactions.

Original languageEnglish (US)
JournalJournal of Visualized Experiments
Issue number67
DOIs
StatePublished - Sep 29 2012
Externally publishedYes

Keywords

  • Cellular biology
  • Genetics
  • Immunoprecipitation
  • Issue 67
  • Microarray
  • Molecular biology
  • PCR
  • RIPChip
  • Ribonucleoprotein
  • Rna
  • mRNA

ASJC Scopus subject areas

  • General Neuroscience
  • General Chemical Engineering
  • General Biochemistry, Genetics and Molecular Biology
  • General Immunology and Microbiology

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