Distinct Developmental Profile of Lower-Body Adipose Tissue Defines Resistance Against Obesity-Associated Metabolic Complications

Author:

Pinnick Katherine E.1,Nicholson George23,Manolopoulos Konstantinos N.4,McQuaid Siobhán E.1,Valet Philippe5,Frayn Keith N.1,Denton Nathan1,Min Josine L.6,Zondervan Krina T.6,Fleckner Jan7,McCarthy Mark I.168,Holmes Chris C.2,Karpe Fredrik18,

Affiliation:

1. Oxford Centre for Diabetes, Endocrinology and Metabolism, University of Oxford, Oxford, U.K.

2. Department of Statistics, University of Oxford, Oxford, U.K.

3. Medical Research Council Harwell, Harwell Science and Innovation Campus, Harwell, U.K.

4. Centre for Endocrinology, Diabetes and Metabolism, University of Birmingham, Birmingham, U.K.

5. Institut des Maladies Metaboliques et Cardiovasculaires, INSERM-Université Paul Sabatier, Toulouse, France

6. Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford, U.K.

7. Novo Nordisk A/S, Novo Nordisk Park, Gentofte, Denmark

8. National Institute for Health Research, Oxford Biomedical Research Centre, Oxford University Hospitals Trust, Oxford, U.K.

Abstract

Upper- and lower-body fat depots exhibit opposing associations with obesity-related metabolic disease. We defined the relationship between DEXA-quantified fat depots and diabetes/cardiovascular risk factors in a healthy population-based cohort (n = 3,399). Gynoid fat mass correlated negatively with insulin resistance after total fat mass adjustment, whereas the opposite was seen for abdominal fat. Paired transcriptomic analysis of gluteal subcutaneous adipose tissue (GSAT) and abdominal subcutaneous adipose tissue (ASAT) was performed across the BMI spectrum (n = 49; 21.4–45.5 kg/m2). In both depots, energy-generating metabolic genes were negatively associated and inflammatory genes were positively associated with obesity. However, associations were significantly weaker in GSAT. At the systemic level, arteriovenous release of the proinflammatory cytokine interleukin-6 (n = 34) was lower from GSAT than ASAT. Isolated preadipocytes retained a depot-specific transcriptional “memory” of embryonic developmental genes and exhibited differential promoter DNA methylation of selected genes (HOTAIR, TBX5) between GSAT and ASAT. Short hairpin RNA–mediated silencing identified TBX5 as a regulator of preadipocyte proliferation and adipogenic differentiation in ASAT. In conclusion, intrinsic differences in the expression of developmental genes in regional adipocytes provide a mechanistic basis for diversity in adipose tissue (AT) function. The less inflammatory nature of lower-body AT offers insight into the opposing metabolic disease risk associations between upper- and lower-body obesity.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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