[HTML][HTML] An integrated approach of comparative genomics and heritability analysis of pig and human on obesity trait: evidence for candidate genes on human …

J Kim, T Lee, TH Kim, KT Lee, H Kim - BMC genomics, 2012 - Springer
J Kim, T Lee, TH Kim, KT Lee, H Kim
BMC genomics, 2012Springer
Background Traditional candidate gene approach has been widely used for the study of
complex diseases including obesity. However, this approach is largely limited by its
dependence on existing knowledge of presumed biology of the phenotype under
investigation. Our combined strategy of comparative genomics and chromosomal heritability
estimate analysis of obesity traits, subscapular skinfold thickness and back-fat thickness in
Korean cohorts and pig (Sus scrofa), may overcome the limitations of candidate gene …
Background
Traditional candidate gene approach has been widely used for the study of complex diseases including obesity. However, this approach is largely limited by its dependence on existing knowledge of presumed biology of the phenotype under investigation. Our combined strategy of comparative genomics and chromosomal heritability estimate analysis of obesity traits, subscapular skinfold thickness and back-fat thickness in Korean cohorts and pig (Sus scrofa), may overcome the limitations of candidate gene analysis and allow us to better understand genetic predisposition to human obesity.
Results
We found common genes including FTO, the fat mass and obesity associated gene, identified from significant SNPs by association studies of each trait. These common genes were related to blood pressure and arterial stiffness (P = 1.65E-05) and type 2 diabetes (P = 0.00578). Through the estimation of variance of genetic component (heritability) for each chromosome by SNPs, we observed a significant positive correlation (r = 0.479) between genetic contributions of human and pig to obesity traits. Furthermore, we noted that human chromosome 2 (syntenic to pig chromosomes 3 and 15) was most important in explaining the phenotypic variance for obesity.
Conclusions
Obesity genetics still awaits further discovery. Navigating syntenic regions suggests obesity candidate genes on chromosome 2 that are previously known to be associated with obesity-related diseases: MRPL33, PARD3B, ERBB4, STK39, and ZNF385B.
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