The strongest BMI-associated GWAS locus in humans is the FTO gene. Rodent studies demonstrate a role for FTO in energy homeostasis and body composition. The phenotypes observed in loss of expression studies are complex with perinatal lethality, stunted growth from weaning, and significant alterations in body composition. Thus understanding how and where Fto regulates food intake, energy expenditure, and body composition is a challenge. To address this we generated a series of mice with distinct temporal and spatial loss of Fto expression. Global germline loss of Fto resulted in high perinatal lethality and a reduction in body length, fat mass, and lean mass. When ratio corrected for lean mass, mice had a significant increase in energy expen...
Two recent, large whole-genome association studies (GWAS) in European populations have associated a ...
OBJECTIVE: Loss of function FTO mutations significantly impact body composition in humans and mice, ...
Objective: Loss of function FTO mutations significantly impact body composition in humans and mice, ...
The strongest BMI-associated GWAS locus in humans is the FTO gene. Rodent studies demonstrate a role...
<div><p>The strongest BMI–associated GWAS locus in humans is the <em>FTO</em> gene. Rodent studies d...
The strongest BMI–associated GWAS locus in humans is the FTO gene. Rodent studies demonstrate a role...
Human FTO gene variants are associated with body mass index and type 2 diabetes. Because the obesity...
In 2007, a genome wide association study identified a SNP in intron 1 of FTO with increased BMI. Hom...
FTO (fat mass and obesity associated) was identified as an obesity-susceptibility gene by several in...
Sequence variants in the first intron of FTO are strongly associated with human obesity and human ca...
Genome-wide association studies have identified SNPs within FTO, the human fat mass and obesity-asso...
Sequence variants in the first intron of FTO are strongly associated with human obesity and human ca...
Genome-wide association studies have identified SNPs within FTO, the human fat mass and obesity-asso...
FTO (fat mass and obesity associated) was identified as an obesity-susceptibility gene by several in...
Genome-wide association studies have identified SNPs within the human FTO gene that display a strong...
Two recent, large whole-genome association studies (GWAS) in European populations have associated a ...
OBJECTIVE: Loss of function FTO mutations significantly impact body composition in humans and mice, ...
Objective: Loss of function FTO mutations significantly impact body composition in humans and mice, ...
The strongest BMI-associated GWAS locus in humans is the FTO gene. Rodent studies demonstrate a role...
<div><p>The strongest BMI–associated GWAS locus in humans is the <em>FTO</em> gene. Rodent studies d...
The strongest BMI–associated GWAS locus in humans is the FTO gene. Rodent studies demonstrate a role...
Human FTO gene variants are associated with body mass index and type 2 diabetes. Because the obesity...
In 2007, a genome wide association study identified a SNP in intron 1 of FTO with increased BMI. Hom...
FTO (fat mass and obesity associated) was identified as an obesity-susceptibility gene by several in...
Sequence variants in the first intron of FTO are strongly associated with human obesity and human ca...
Genome-wide association studies have identified SNPs within FTO, the human fat mass and obesity-asso...
Sequence variants in the first intron of FTO are strongly associated with human obesity and human ca...
Genome-wide association studies have identified SNPs within FTO, the human fat mass and obesity-asso...
FTO (fat mass and obesity associated) was identified as an obesity-susceptibility gene by several in...
Genome-wide association studies have identified SNPs within the human FTO gene that display a strong...
Two recent, large whole-genome association studies (GWAS) in European populations have associated a ...
OBJECTIVE: Loss of function FTO mutations significantly impact body composition in humans and mice, ...
Objective: Loss of function FTO mutations significantly impact body composition in humans and mice, ...