Repository logo
Log In(current)
  1. Home
  2. Colleges & Schools
  3. Tickle College of Engineering
  4. Engineering Publications and Other Works
  5. EECS Publications and Other Works
  6. A module-based analytical strategy to identify novel disease-associated genes shows an inhibitory role for interleukin 7 Receptor in allergic inflammation
Details

A module-based analytical strategy to identify novel disease-associated genes shows an inhibitory role for interleukin 7 Receptor in allergic inflammation

Date Issued
February 12, 2009
Author(s)
Mobini, Reza
Andersson, Bengt A.
Erjefält, Jonas
Hahn-Zoric, Mirjana
Langston, Michael A  
Perkins, Andy D.  
Cardell, Lars O.
Benson, Mikael
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/17136
Abstract

Background


The identification of novel genes by high-throughput studies of complex diseases is complicated by the large number of potential genes. However, since disease-associated genes tend to interact, one solution is to arrange them in modules based on co-expression data and known gene interactions. The hypothesis of this study was that such a module could be a) found and validated in allergic disease and b) used to find and validate one ore more novel disease-associated genes.

Results

To test these hypotheses integrated analysis of a large number of gene expression microarray experiments from different forms of allergy was performed. This led to the identification of an experimentally validated reference gene that was used to construct a module of co-expressed and interacting genes. This module was validated in an independent material, by replicating the expression changes in allergen-challenged CD4+ cells. Moreover, the changes were reversed following treatment with corticosteroids. The module contained several novel disease-associated genes, of which the one with the highest number of interactions with known disease genes, IL7R, was selected for further validation. The expression levels of IL7R in allergen challenged CD4+ cells decreased following challenge but increased after treatment. This suggested an inhibitory role, which was confirmed by functional studies.

Conclusion

We propose that a module-based analytical strategy is generally applicable to find novel genes in complex diseases.

Disciplines
Electrical and Computer Engineering
Recommended Citation
BMC Systems Biology 2009, 3:19 doi:10.1186/1752-0509-3-19
Embargo Date
July 10, 2013
File(s)
Thumbnail Image
Name

1752_0509_3_19.pdf

Size

582.07 KB

Format

Adobe PDF

Checksum (MD5)

4d26eb90bff2125025a540e212bb8174


University Libraries

1015 Volunteer Boulevard
Knoxville, TN 37996
865-974-4351

Map & Directions
Donate to the Libraries
  • About
  • John C. Hodges Society
  • Speaking Volumes magazine
  • Outreach
  • Directory
  • Employment
  • Policies
  • Library Intranet
University of Tennessee power T logo

The University of Tennessee, Knoxville
Knoxville, Tennessee 37996
865-974-1000

Events
A-Z
Apply
Privacy
Map
Directory
Give to UT
Accessibility

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science