The rs1800629 polymorphism in the TNF gene interacts with physical activity on the changes in C-reactive protein levels in the Finnish Diabetes Prevention Study

T. O. Kilpelainen, D. E. Laaksonen, T. A. Lakka, C. Herder, W. Koenig, J. Lindstrom, J. G. Eriksson, M. Uusitupa, H. Kolb, M. Laakso, J. Tuomilehto, Finnish Diabet Prevention Study

Research output: Contribution to journalArticleScientificpeer-review

Abstract

Physical activity exerts anti-inflammatory effects, but genetic variation may modify its influence. In particular, the rs1800629 single-nucleotide polymorphism (SNP) in the tumor necrosis factor ( TNF) gene and the rs1800795 SNP in the interleukin-6 ( IL6) gene have been found to modify the effect of exercise training on circulating levels of C-reactive protein (CRP) and IL-6, respectively. We assessed whether rs1800629 and rs1800795 modified the effect of moderate-to-vigorous physical activity on changes in serum levels of high-sensitivity CRP and IL-6 in the Finnish Diabetes Prevention Study (DPS). Genotype and 1-year data on changes in physical activity, serum CRP and IL-6 were available for 390 overweight subjects with impaired glucose tolerance. The rs1800629 SNP in TNF interacted with the 1-year change in moderate-to-vigorous physical activity on changes in CRP among those who had high (>/=3 mg/L) baseline CRP levels ( P=0.034 for interaction). Carriers of the GG genotype showed a greater decrease in CRP with increasing physical activity than the individuals with the A allele. No interaction between the rs1800795 SNP in IL6 and changes in moderate-to-vigorous physical activity on the 1-year change in serum IL-6 was found. In conclusion, the rs1800629 SNP in the TNF gene may modify the effect of moderate-to-vigorous physical activity on serum levels of CRP.

Original languageEnglish
JournalExperimental and Clinical Endocrinology and Diabetes
Volume118
Issue number10
Pages (from-to)757-759
Number of pages3
ISSN0947-7349
DOIs
Publication statusPublished - 2010
MoE publication typeA1 Journal article-refereed

Fields of Science

  • immunology
  • C-reactive protein
  • interleukin-6
  • tumor necrosis factor-alpha
  • exercise
  • genes
  • IMPAIRED GLUCOSE-TOLERANCE
  • HERITAGE FAMILY
  • EXERCISE

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