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Integrative mRNA-microRNA analyses reveal novel interactions related to insulin sensitivity in human adipose tissue.

Authors :
Kirby, Tyler J.
Walton, R. Grace
Finlin, Brian
Beibei Zhu
Unal, Resat
Rasouli, Neda
Peterson, Charlotte A.
Kern, Philip A.
Source :
Physiological Genomics. Feb2016, Vol. 48 Issue 2, p145-153. 9p.
Publication Year :
2016

Abstract

Adipose tissue has profound effects on whole-body insulin sensitivity. However, the underlying biological processes are quite complex and likely multifactorial. For instance, the adipose transcriptome is posttranscriptionally modulated by microRNAs, but the relationship between microRNAs and insulin sensitivity in humans remains to be determined. To this end, we utilized an integrative mRNA-microRNA microarray approach to identify putative molecular interactions that regulate the transcriptome in subcutaneous adipose tissue of insulinsensitive (IS) and insulin-resistant (IR) individuals. Using the Nano- String nCounter Human v1 microRNA Expression Assay, we show that 17 microRNAs are differentially expressed in IR vs. IS. Of these, 16 microRNAs (94%) are downregulated in IR vs. IS, including miR-26b, miR-30b, and miR-145. Using Agilent Human Whole Genome arrays, we identified genes that were predicted targets of miR-26b, miR-30b, and miR-145 and were upregulated in IR subjects. This analysis produced ADAM22, MYO5A, LOX, and GM2A as predicted gene targets of these microRNAs. We then validated that miR-145 and miR-30b regulate these mRNAs in differentiated human adipose stem cells. We suggest that use of bioinformatic integration of mRNA and microRNA arrays yields verifiable mRNA-microRNA pairs that are associated with insulin resistance and can be validated in vitro. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10948341
Volume :
48
Issue :
2
Database :
Academic Search Index
Journal :
Physiological Genomics
Publication Type :
Academic Journal
Accession number :
112695753
Full Text :
https://doi.org/10.1152/physiolgenomics.00071.2015