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  5. Fat mass- and obesity-associated gene Fto affects the dietary response in mouse white adipose tissue

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Article
en
2015

Fat mass- and obesity-associated gene Fto affects the dietary response in mouse white adipose tissue

0 Datasets

0 Files

en
2015
Vol 5 (1)
Vol. 5
DOI: 10.1038/srep09233

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Paul M Ridker
Paul M Ridker

Harvard University

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Justiina Ronkainen
Tuija Huusko
Raija Soininen
+9 more

Abstract

Abstract Common variants of human fat mass- and obesity-associated gene Fto have been linked with higher body mass index, but the biological explanation for the link has remained obscure. Recent findings suggest that these variants affect the homeobox protein IRX3. Here we report that FTO has a role in white adipose tissue which modifies its response to high-fat feeding. Wild type and Fto -deficient mice were exposed to standard or high-fat diet for 16 weeks after which metabolism, behavior and white adipose tissue morphology were analyzed together with adipokine levels and relative expression of genes regulating white adipose tissue adipogenesis and Irx3 . Our results indicate that Fto deficiency increases the expression of genes related to adipogenesis preventing adipocytes from becoming hypertrophic after high-fat diet. In addition, we report a novel finding of increased Irx3 expression in Fto -deficient mice after high-fat feeding indicating a complex link between FTO, IRX3 and fat metabolism.

How to cite this publication

Justiina Ronkainen, Tuija Huusko, Raija Soininen, Eleonora Mondini, Francesca Cinti, Kari A. Mäkelä, Miia Kovalainen, Karl‐Heinz Herzig, Paul M Ridker, Sylvain Sebért, Markku J. Savolainen, Tuire Salonurmi (2015). Fat mass- and obesity-associated gene Fto affects the dietary response in mouse white adipose tissue. , 5(1), DOI: https://doi.org/10.1038/srep09233.

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Publication Details

Type

Article

Year

2015

Authors

12

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1038/srep09233

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