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PMID: 19238158 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A missense mutation in the non-neural G-protein alpha-subunit isoforms modulates susceptibility to obesity.

International journal of obesity (2005) ·Vol. 33 ·No. 5 ·2009-05-00 ·Pages 507-18

Kelly ML, Moir L, Jones L, Whitehill E, Anstee QM, Goldin RD, Hough A, Cheeseman M, Jansson JO, Peters J, Cox RD

Abstract

The Gnas transcription unit located within an imprinting region encodes several proteins, including the G-protein alpha-subunit, Gsalpha, its isoform XLalphas and their variant truncated neural forms GsalphaN1 and XLN1. Gsalpha and GsalphaN1 are expressed predominantly from the maternally derived allele in some tissues, whereas XLalphas and XLN1 are expressed exclusively from the paternally derived allele. The relative contribution of full-length Gsalpha and XLalphas, and truncated forms GsalphaN1 and XLN1 to phenotype is unknown. The edematous-small point mutation (Oed-Sml) in exon 6 of Gnas lies downstream of GsalphaN1 and XLN1, but affects full-length Gsalpha and XLalphas, allowing us to address the role of full-length Gsalpha and XLalphas. The aim of this study was therefore to determine the metabolic phenotypes of Oed and Sml mice, and to correlate phenotypes with affected transcripts. Mice were fed standard or high-fat diets and weighed regularly. Fat mass was determined by DEXA analysis. Indirect calorimetry was used to measure metabolic rate. Glucose was measured in tolerance tests and biochemical parameters in fasted plasma samples. Histological analysis of fat and liver was carried out post mortem. Oed mice are obese on either diet and have a reduced metabolic rate. Sml mice are lean and are resistant to a high-fat diet and have an increased metabolic rate. Adult Oed and Sml mice have opposite metabolic phenotypes. On maternal inheritance, the obese Oed phenotype can be attributed to non-functional full-length Gsalpha. In contrast, on paternal inheritance, Sml mice were small and resistant to the development of obesity on a high-fat diet, effects that can be attributed to mutant XLalphas. Thus, the neural isoforms, GsalphaN1 and XLN1, do not appear to play a role in these metabolic phenotypes.

MeSH Terms
Animals Biomarkers/blood Body Composition Chromogranins Dietary Fats/administration & dosage Disease Models, Animal Energy Metabolism/genetics GTP-Binding Protein alpha Subunits/genetics GTP-Binding Protein alpha Subunits, Gs/genetics Hyperglycemia/genetics Male Mice Mutation, Missense/genetics Obesity/genetics Point Mutation/genetics Protein Isoforms
Chemicals
Biomarkers Chromogranins Dietary Fats GTP-Binding Protein alpha Subunits Protein Isoforms GNAS protein, human GTP-Binding Protein alpha Subunits, Gs
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Kelly M L
MRC Harwell, Metabolism and Inflammation Section, Diabetes Group, Harwell Science and Innovation Campus, Oxfordshire, UK.
Moir L
Jones L
Whitehill E
Anstee Q M
Goldin R D
Hough A
Cheeseman M
Jansson J-O
Peters J
Cox R D
Article Info
Journal
International journal of obesity (2005)
Abbr.
Int J Obes (Lond)
ISSN
1476-5497
Published
2009-05-00
Epub
2009-00-24
Pages
507-18
Language
English
Region
England
NLM ID
101256108
Subset
IM
Grants
Medical Research Council · MC_U142684175 · United Kingdom
Medical Research Council · MC_U142670371 · United Kingdom
Medical Research Council · MC_U142661184 · United Kingdom
Medical Research Council · MC_UP_1502/1 · United Kingdom
Medical Research Council · MC_U142636336 · United Kingdom
Medical Research Council · G84/6233 · United Kingdom
Medical Research Council · MC_U142684172 · United Kingdom
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