BioGPS
  • Home
  • Help
  • Plugins
  • Datasets
  • Sign Up
  • Login
Examples: Gene Symbol(s), Gene Ontology, Splicing plugins, Melanoma datasets
advanced
Home › Dataset Library › Global Target mRNA Specification and Regulation by RNA-Binding Protein ZFP36/Tristetraprolin/TTP [Affymetrix]

Dataset: Global Target mRNA Specification and Regulation by RNA-Binding Protein ZFP36/Tristetraprolin/TTP [Affymetrix]

Tristetraprolin/ZFP36/TTP and ELAVL1/HuR are two disease-relevant RNA-binding proteins (RBPs) that both interact with AU-rich sequences...

Registered by ArrayExpress Uploader
View Dataset

Tristetraprolin/ZFP36/TTP and ELAVL1/HuR are two disease-relevant RNA-binding proteins (RBPs) that both interact with AU-rich sequences but have antagonistic roles. While ELAVL1 binding has been profiled in several studies, the precise in vivo binding specificity of ZFP36 has not been investigated on a global scale. We determined ZFP36 binding preferences using cross-linking and immunoprecipitation in human embyonic kidney cells and examined combinatorial regulation of AU-rich elements by ZFP36 and ELAVL1. Among the targets ZFP36 binds and negatively regulates the mRNA of genes encoding proteins necessary for immune function and cancer, and other RBPs. Using partial correlation analysis, we were able to quantify the association between ZFP36 binding sites and differential target RNA abundance from ZFP36 overexpression independent of effects from confounding features, such as 3’ UTR length. We identified thousands of overlapping ZFP36 and ELAVL1 binding sites, in 1,313 genes. ZFP36 preferentially interacts with and regulates AU-rich sequences while ELAVL1 prefers predominantly U- and CU-rich sequences. RNA target specificity identified by global in vivo ZFP36-mRNA interactions were quantitatively similar to previously reported in vitro binding affinities. ZFP36 and ELAVL1 both bind an overlapping spectrum of RNA sequences, yet with differential relative preferences that dictate combinatorial regulatory potential. Our findings and methodology delineate an approach to untangle the in vivo combinatorial regulation by RNA-binding proteins. Five biological replicates for each of the four sample classes -> Parental and EGFP-ZFP36 HEK293 cells treated with either doxycycline or water.

Species:
human

Samples:
20

Source:
E-GEOD-53183

Updated:
Dec.12, 2014

Registered:
Jul.11, 2014


Factors: (via ArrayExpress)
Sample CELL TREATMENT
GSM1286116 Parental water
GSM1286116 Parental water
GSM1286116 Parental water
GSM1286116 Parental water
GSM1286116 Parental water
GSM1286 EGPF-ZFP36_Stable Doxycline
GSM1286 EGPF-ZFP36_Stable Doxycline
GSM1286 EGPF-ZFP36_Stable Doxycline
GSM1286 EGPF-ZFP36_Stable Doxycline
GSM1286 EGPF-ZFP36_Stable Doxycline
GSM1286106 EGPF-ZFP36_Stable water
GSM1286106 EGPF-ZFP36_Stable water
GSM1286106 EGPF-ZFP36_Stable water
GSM1286106 EGPF-ZFP36_Stable water
GSM1286106 EGPF-ZFP36_Stable water
GSM128610 Parental Doxycline
GSM128610 Parental Doxycline
GSM128610 Parental Doxycline
GSM128610 Parental Doxycline
GSM128610 Parental Doxycline

Tags

  • cancer
  • disease
  • kidney

Other Formats

JSON    XML
  • About
  • Blog
  • Help
  • FAQ
  • Downloads
  • API
  • iPhone App
  • Email updates
© 2025 The Scripps Research Institute. All rights reserved. (ver 94eefe6 )
  • Terms of Use