ASSOCIATION OF INFECTIVE ENDOCARDITIS WITH GENE POLYMORPHISMS OF THE PHASE II XENOBIOTIC DETOXICATION SYSTEM ENZYMES

DOI: https://doi.org/None

Mal'tseva N.V., Laputenko T.A., Gorbatovskii Ya.A.

Introduction. Pathogenesis of infective endocarditis (IE) is not quite clear till now. In last years research of variants of the genes connected with pathogenesis of IE was performed. The aim. The investigation of IE association with gene single-nucleotide polymorphisms (SNPs) of phase II xenobiotic detoxication system (XDS) enzymes, arylamine N-acetyltransferase 2 (NAT2) and glutathione-S-transferaseP1 (GSTP1). Material and methods. 48 IE patients and 56 persons without cardiovascular pathology (control) were genotyped on polymorphic loci rs1799930, rs1208 and rs1695 by the method of allele specific polymerase chain reaction. Results. The association of rs1208 and rs1695 with IE was found, there was shown the positive correlation with the disease and the high risk of its development in carriers of Arg268Arg in NAT2 gene (OR=5,25, р=0,0049) and Ile105Val in GSTP1gene (ОR=5,4, р
Keywords: 
infective endocarditis, N-acetyltransferase, glutathione-S-transferase P1, gene, single-nucleotide polymorphism

Список литературы: 
  1. Demin A.A Infekcionnyy e`ndokardit. V kn.: Kardiologiya: nacional`noe rukovodstvo. M.: GE`OTAR-Media, 2015; 605–22. [Demin A.A Infective endocarditis. V kn.: Kardiologiya: natsional’noe rukovodstvo. M.: GEOTAR-Media, 2015; 605–22 (in Russian)]
  2. Danilov A.I., Alekseeva I.V., Asner T.V., Vlasova E.E., Danilova E.M., Dehnich A.V., Drozdovich E.L., Eger` Yu.V., Elohina E.V., Kalyagin A.N., Kozlov R.S., Krechikova O.I., Litvinov A.V., Milyagin V.A., Mladov V.V., Ortenberg1o E`.A., Palyutin Sh.H., Portnyagina U.S., Rog A.A., Trushin I.V., Fedorova O.B., Fominyh S.G., Shames D.V., Shpuntov M.G., Yakupova S.P. E`tiologiya infekcionnogo e`ndokardita v Rossii. Klinicheskaya mikrobiologiya i antimikrobnaya himioterapiya. 2015; 17 (1): 4–10. [Danilov A.I., Alekseeva I.V., Asner T.V., Vlasova E.E., Danilova E.M., Dekhnich A.V., Drozdovich E.L., Eger Yu.V., Elokhina E.V., Kalyagin A.N., Kozlov R.S., Krechikova O.I., Litvinov A.V., Milyagin V.A., Mladov V.V., Ortenberg1O E.A., Palyutin Sh.H., Portnyagina U.S., Rog A.A., Trushin I.V., Fedorova O.B., Fominykh S.G., Shames D.V., Shpuntov M.G., Yakupova S.P. Etiology of Infective Endocarditis in Russia. Klinicheskaya Mikrobiologiya i Antimikrobnaya Khimioterapiya. 2015; 17 (1): 4–10 (in Russian)]
  3. Bustamante J., Tamayo E., Florez S., Telleria J.J., Bustamante E., Lopez J., San Roman J.A., Alvarez F.J. Toll-Like Receptor 2 R753Q Polymorphisms Are Associated With an Increased Risk of Infective Endocarditis. Rev. Esp. Cardiol. 2011; 64 (11): 1056–9.
  4. Ponasenko A.V., Kutihin A.G., Hutornaya M.V., Yuzhalin A.E., Rutkovskaya N.V., Golovkin A.S., Barbarash L.S. Svyaz` polimorfizmov genov sistemy TLR s riskom razvitiya infekcionnogo e`ndokardita. Medicina v Kuzbasse. 2015; XIV (4): 4–10. [Ponasenko A.V., Kutikhin A.G., Khutornaya M.V., Yuzhalin A.E., Rutkovskaya N.V., Golovkin A.S., Barbarash L.S. Polymorphisms within the genes encoding Toll-like receptors and risk of infective endocarditis. Meditsina v Kuzbasse. 2015; XIV (4): 4–10 (in Russian)]
  5. Smith C.J, Fischer T.H. Particulate and vapor phase constituents of cigarette mainstream smoke and risk of myocardial infarction. Atherosclerosis. 2001; 158: 257–67.
  6. Conklin D.J., Haberzettl P., Prough R.A., Bhatnagar A. Glutathione-S-transferase P protects against endothelial dysfunction induced by exposure to tobacco smoke. American Journal of Physiology – Heart and Circulatory Physiology. 2009; 296 (5): 1586–97.
  7. Cornelis M.C., El-Sohemy A., Campos H. Genetic polymorphism of CYP1A2 increases the risk of myocardial infarction. J. Med. Genet. 2004; 41 (10): 758–62.
  8. Karchmer A.W. Infekcionnyy e`ndokardit. Gl. 63. V kn.: Bolezni serdca po Braunval`du. Rukovodstvo po serdechno-sosudistoy medicine. Pod red. P. Libbi, R.O. Bonou, D.L. Manna, D.P. Zaypsa. T.4., chasti VIII, IX, X: glavy 61–89. M.: Logosfera, 2015; 808. [Karchmer A.W. Infective endocarditis. Chapter 63. In.: Braunwald’s heart disease. A textbook of cardiovascular medicine. Ed. By P. Libby, R.O. Bonow, D.L. Mann, D.P. Zipes. V.4; Parts VIII, IX, X: Ch. 61–89. M: Logosphera, 2015; 808 (in Russian)]
  9. Mal`ceva N.V., Laputenko T.A., Gorbatovskiy Ya.A., Lykova O.F. Issledovanie geneticheskogo riska razvitiya infekcionnogo e`ndokardita. Materialy IV Vserossiyskoy konferencii «Protivorechiya sovremennoy kardiologii: spornye i nereshennye voprosy» 3-y forum molodyh kardiologov «Kardiologiya na styke nastoyashhego i budushhego». Samara, 2015; 159–60. [Mal’tseva N.V., Laputenko T.A., Gorbatovskii Ya.A., Lykova O.F. The genetic risk of infective endocarditis. Materialy IV Vserossiyskoy konferentsii «Protivorechiya sovremennoy kardiologii: spornye i nereshennye voprosy» 3-y forum molodykh kardiologov «Kardiologiya na styke nastoyashchego i budushchego». Samara, 2015; 159–60 (in Russian)]
  10. Mal`ceva N.V., Laputenko T.A., Lykova O.F., Gorbatovskiy Ya.A. Polimorfizmy genov fermentov sistemy detoksikacii ksenobiotikov i risk razvitiya infekcionnogo e`ndokardita. Klinicheskaya medicina. 2016; 94 (8): 596–601. [Mal’tseva N.V., Laputenko T.A., Lykova O.F., Gorbatovskii Ya.A. Gene polymorphisms of the xenobiotic detoxication system enzymes and risk of infective endocarditis. Klinicheskaya Meditsina. 2016; 94 (8): 596–601 (in Russian)]
  11. Hein D.W., Doll M.A., Fretland A.J., Leff M.A., Webb S.J., Xiao G.H., Devanaboyina U.S., Nangju N.A., Feng Y. Molecular genetics and epidemiology of the NAT1 and NAT2 acetylation polymorphisms. Cancer Epidemiol Biomarkers Prev. 2000; 9 (1): 29–42.
  12. Aqundez J.A. Polymorphisms of human N-acetyltransferases and cancer risk. Curr. Drug Metab. 2008; 9 (6): 520–31.
  13. Jiang W., Feng Y., Hein D.W. Higher DNA adduct levels in urinary bladder and prostate of slow acetylator inbred rats administered 3,2’-dimethyl-4-aminobiphenyl. Toxicol. Appl Pharmacol. 1999; 156 (3): 187–94.
  14. An Y., Li H., Wang K.J., Liu X.H.,, Qiu M.X., Liao Y., Huang J.L., Wang X.S. Meta-analysis of the relationship between slow acetylation of N-acetyl transferase 2 and the risk of bladder cancer. Genet. Mol. Res. 2015; 14 (4): 16896–904.
  15. Roberts-Thomson I.C., Ryan P., Khoo K.K., Hart W.J., McMichael A.J., Butler R.N. Diet, acetylator phenotype, and risk of colorectal neoplasia. Lancet. 1996; 347 (9012): 1372–4.
  16. Mal`ceva N.V., Lykova O.F., Mel`nichenko M.A., Arhipova S.V., Onishhenko A.L. Zavisimost` soderzhaniya immunoglobulinov IgA i IgE v sleznoy zhidkosti ot polimorfizmov gena glutation-S-transferazy-R1 u metallurgov s oftal`mopatologiey. Medicinskaya immunologiya. 2011; 13 (6): 609–16. [Mal’tseva N.V., Lykova O.F., Mel’nichenko M.A., Arkhipova S.V., Onishchenko A.L. The dependence of IgA and IgE tear levels from glutathione-S-transferase P1 polymorphisms in steelworkers with ophtalmopathology. Meditsinskaya immunologiya. 2011; 13 (6): 609–16 (in Russian)]