G276T ADIPONECTIN GENE POLYMORPHISM IN DEVELOPMENT OF OBESITY AND OBESITY-RELATED DISEASES IN KYRGYZ POPULATION

DOI: https://doi.org/None

Zh.T. Isakova (1), E.T. Talaibekova (1), D.A. Asambaeva (1), A.S. Kerimkulova (2), O.S. Lunegova (2), A.A. Aldashev (1) 1 -Institute of Molecular Biology and Medicine, Togolok-Moldo str, 3, Bishkek, 720040, Kyrgyz Republic; 2 -National Center of Cardiology and Internal Medicine, Togolok-Moldo str, 3, Bishkek, 720040, Kyrgyz Republic

The aim of this work was to study the relationship between adiponectin gene polymorphisms G276T with obesity and obesity-related diseases in the Kyrgyz population. Material and methods. We genotyped 288 Kyrgyz subjects (143 women and 145 men; age range: 30–75 years). Arterial blood pressure, anthropometric measurement and fasting blood glucose, lipid profiles were measured in every case. The Adiponectin gene polymorphism (G276T) was analyzed by standard method with the use of PCR- RFLP. Results. Among Kyrgyz 288 subjects the allele frequencies were 0,75 for G allele and 0,25 for T allele in G276T of the adiponectin gene (ADIPOQ). Genotypes distributions of G276T polymorphisms were no significantly different between obese (BMI>30 kg/m2) and nonobese cases (BMI
Keywords: 
polymorphism G276T, adiponectin gene, obesity, diabetes mellitus type 2, Kyrgyz population

Список литературы: 
  1. Nacional`nyy statisticheskiy komitet, Kyrgyzstan v cifrah 2014. http://www.stat.kg.[Nacional’nyj statisticheskij komitet, Kyr-gyzstan v cifrah 2014. http://www.stat.kg (in Russian)]
  2. Polupanov A.N., Halmatov A.N., Altymysheva A.T. Mahmudov M.T., Ryskulova S.M., Mamasaidov Zh.A. Rasprostranennost` serdechno-sosudistyh faktorov riska sredi zhiteley Kyrgyzskoy Respubliki. Rasprostranennost` metabolicheskih faktorov riska. Central`no-Aziatskiy Medicinskiy zhurnal. 2013; T. XIX. 4: 34–8.[Polupanov A.N., Halmatov A.N., Altymy-sheva A.T. Mahmudov M.T., Ryskulova S.M., Mamasaidov Zh.A. Rasprostranennost’ serdechno-sosudistyh faktorov riska sredi zhitelej Kyrgyzskoj Respubliki. Raspros-tranennost’ metabolicheskih faktorov riska. Central’no-Aziatskij Medicinskij zhurnal. 2013; T. XIX. 4: 34–8 (in Russian)
  3. Dedov I.I, Mel`nichenko G.A., Butrova S.A. Zhirovaya tkan` kak e`ndokrinnyy organ. Ozhirenie i metabolizm. 2006; 1: 7–13.[Dedov I.I., Mel’nichenko G.A, Butrova S.A. Zhirovaja tkan’ kak jendokrinnyj organ. Ozhirenie i metabolizm. 2006; 1: 7–13 (in Russian)]
  4. Whitehead J.P., Richards A.A., Hickman I.J., Macdonald G.A., Prins J.B. Adiponectin–A key adipokine in the metabolic syndrome. Diabetes, Obesity and Metabolism. 2006; 8: 264–80.
  5. Pal`ceva E.M., Rodina A.V., Andreev D.A., Ermakov N.V., Ponomar` E.G., Gusev D.E., Severin S.E., Syrkin A.L. Vzaimosvyaz` urovney adiponektina i S-reaktivnogo belka v krovi pri stabil`nom techenii ishemicheskoy bolezni serdca i ostrom koronarnom sindrome. Mol. med. 2009; 4: 33–7. [Pal’ceva E.M, Rodina A.V, Andreev D.A, Ermakov N.V, Ponomar’ E.G, Gusev D.E, Severin S.E, Syrkin A.L. Vzaimosvjaz’ urovnej adiponektina i S-reaktivnogo belka v krovi pri stabil’nom techenii ishemicheskoj bolezni serdca i ostrom koronarnom sindrome. Mol. med. 2009; 4: 33–7 (in Russian)]
  6. Takahashi M., Arita Y., Yamagata K., Matsu-kawa Y., Okutomi K., Horie M., Shimomura I., Hotta K., Kuriyama H., Kihara S., Naka-mura T., Yamashita S., Funahashi T., Matsu-zawa Y. Genomic structure and mutations in adipose-specific gene, adiponectin. International J. of Obesity. 2000; 24: 861–8.
  7. Hara K., Boutin P., Mori Y., Tobe K., Dina C., Yasuda K., Yamauchi T., Otabe S., Okada T., Eto K., Kadowaki H., Hagura R., Akanuma Y., Yazaki Y., Nagai R., Taniyama M., Matsubara K., Yoda M., Nakano Y., Tomita M., Kimura S., Ito C., Froguel P., Kadowaki T. Genetic variation G276T in the gene encoding adi-ponectin is associated with an increased risk of type 2 diabetes in the Japanese population. Diabetes. 2000; 536–40
  8. Youpeng B., Wei X., Wei L., Jin J., Haiyan Y., Yuan Y., Rong Z. Relationships among adi-ponectin gene polymorphisms, proteinuria and increased blood pressure in the con-text of placental diseases. Hypertens Res. 2010; 33 (10): 1066–70.
  9. Yu Y.S., Han Ryu K.H., Park J.H., Choi J.Y., Huh B.K., Kim Y.W. Adiponectin gene SNP 276G→T, nutrient intakes, and cardiovas-cular disease risk in Korean type 2 DM patients. Nutrition Research and Practice. 2007; 1 (4): 363–70
  10. Ming-Kai Tsai., Hui-Min David Wang., Jeng-Chuan Shiang. Sequence Variants of ADIPOQ and Association with Type 2 Diabetes Mellitus in Taiwan Chinese Han Population. Scientific World J. 2014. http://dx.doi.org/10.1155/2014/650393
  11. Friedewald W.T., Levy R.I., Fredrickson D.S. Estimation of the concentration of low density lipoprotein cholesterol in plasma, without use of the preparative ultracentri-fuge. Clin. Chem. 1972; 18: 499–502.
  12. Fredriksson J., Carlsson E., Orho-Melander M., Groop L., Ridderstra M. A polymor-phism in the adiponectin gene influences adiponectin expression levels in visceral fat in obese subjects. International Journal of Obesity. 2006; 30: 226–32.
  13. Shvarc V. Adiponektin: patofiziologicheskie aspekty. Patol. fiziol. i e`ksp. terapiya. 2009; 3: 34–8.[Shvarc V. Adiponektin: patofiziologichesk-ie aspekty. Patol. fiziol. i jeksp. terapija. 2009; 3: 34–8 (in Russian)]
  14. Pal`ceva E.M., Konstantinova S.V., Severina S.E. Novye biomarkery: adiponektin v sovremennoy diagnostike serdechno-sosudistyh zabolevaniy. Kardiologiya. 2009; 10: 65–74. [Pal’ceva E.M., Konstantinova S.V., Sev-erina S.E. Novye biomarkery: adiponektin v sovremennoj diagnostike serdechno-sosudistyh zabolevanij. Kardiologija. 2009; 10: 65–74 (in Russian)]
  15. Melistas L., Christos S.M., Meropi K., Smaragdi A., Jose M. Association of the +45T>G and +276G>T polymorphisms in the adiponectin gene with insulin resistance in nondiabetic Greek women. Euro-pean Journal of Endrocinalogy. 2009; 161: 845–52.
  16. Mackawy M.H., Alzohairy M., Entisar Abd–Alfarag Ahmed., Badawy E.H. Adiponectin Gene Polymorphism and the Incidence of Type 2 Diabetes Mellitus in Obese Patients in Qassim Region, Saudi Arabia. J. of Ameri-can Science. 2011; 7 (12): 432–43.
  17. Zaki M.E., Abdel-Salam M., Hassan M.N., Mohamed S.K., Zaher M.M., Ibraheim R.M., Elkhouly A.E., Ismail S. Association of adiponectin gene pomymorphism 276G>T with obesity and biochemical parameters in adolescents. Int. J. Pharm Pharm Sci. 2014; 6 (5): 226–9.
  18. Jang Y., Lee J.H., Kim O.Y., Koh S.J., Chae J.S., Woo J.H., Cho H., Lee J.E., Ordovas J.M. The SNP276G>T polymorphism in the adiponectin (ACDC) gene is more strongly associated with insulin resistance and cardiovascular disease risk than SNP45T>G in nonobese/nondiabetic Korean men independent of abdominal adiposity and circulating plasma adiponectin. Metabo-lism. 2006; 55: 59–66.
  19. Sheng T., Yang K. Adiponectin and its as-sociation with insulin resistance and type 2 diabetes. J. Genet Genomics. 2008; 35: 321–6
  20. Grundy S.M., Cleeman J.I., Daniels S.R., Donato K.A., Eckel R.H. Diagnosis and management of the metabolic syndrome: an American Heart Association.National Heart, Lung, and Blood Institute Scien-tific Statement. Circulation. 2005; 112: 2735–52.