Literature DB >> 19850727

Endurance exercise training effects on body fatness, VO2max, HDL-C subfractions, and glucose tolerance are influenced by a PLIN haplotype in older Caucasians.

Nathan T Jenkins1, Jennifer A McKenzie, Coleen M Damcott, Sarah Witkowski, James M Hagberg.   

Abstract

Perilipins are lipid droplet-coating proteins that regulate intracellular lipolysis in adipocytes. A haplotype of two perilipin gene (PLIN) single nucleotide polymorphisms, 13041A>G and 14995A>T, has been previously associated with obesity risk. Furthermore, the available data indicate that this association may be modified by sex. We hypothesized that this haplotype would associate with body fatness, aerobic fitness, and a number of cardiovascular (CV) risk factor phenotypes before and after a 6-mo endurance exercise training program in sedentary older Caucasians. The major haplotype group (13041A/14995A; n = 57) had significantly lower body mass index (BMI) and body fatness compared with noncarriers of the AA haplotype (n = 44) before the training intervention. Training improved body composition in both groups, but fatness remained higher in noncarriers than AA carriers after training. This fat retention in noncarriers blunted their maximal oxygen uptake (Vo(2 max)) adaptation to training. Female noncarriers had substantially higher concentrations of several conventionally and NMR-measured HDL-C subfractions than male noncarriers before and after training, but only minimal differences were found between the sexes in the AA haplotype group. Haplotype group differences in baseline and after-training responses to an oral glucose tolerance test (OGTT) also differed by sex, as noncarrier men had the highest baseline area under the insulin curve (insulin AUC), but were the only group to significantly improve insulin AUC with training. The insulin sensitivity index and plasma glucose responses to the OGTT were more favorable in AA carriers than noncarriers before and after training. Overall, our findings suggest that PLIN variation explains some of the interindividual differences in the response of obesity and CV phenotypes to exercise training. Furthermore, these data contribute to the growing understanding of PLIN as a candidate gene for human obesity and the cardiometabolic consequences of excess adiposity.

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Year:  2009        PMID: 19850727      PMCID: PMC2838632          DOI: 10.1152/japplphysiol.01018.2009

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  37 in total

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  14 in total

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3.  AKT1 G205T genotype influences obesity-related metabolic phenotypes and their responses to aerobic exercise training in older Caucasians.

Authors:  Jennifer A McKenzie; Sarah Witkowski; Andrew T Ludlow; Stephen M Roth; James M Hagberg
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Authors:  José M Ordovás; Caren E Smith
Journal:  J Appl Physiol (1985)       Date:  2010-01-14

Review 5.  Evidence for sex differences in cardiovascular aging and adaptive responses to physical activity.

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6.  Health behavior change: can genomics improve behavioral adherence?

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Authors:  Caren E Smith; José M Ordovás
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Review 8.  Type 2 diabetes: prevalence and relevance of genetic and acquired factors for its prediction.

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9.  Effect of aerobic exercise on risk factors of cardiovascular disease and the apolipoprotein B / apolipoprotein a-1 ratio in obese woman.

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Journal:  J Phys Ther Sci       Date:  2014-11-13

10.  Physical activity enhances metabolic fitness independently of cardiorespiratory fitness in marathon runners.

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