Role of Single Nucleotide Polymorphism of СУР17А Gene in the Development of Stroke
https://doi.org/10.20996/1819-6446-2018-14-4-488-493
Abstract
Background. The search for genetic predictors of stroke development is actively studied in all developed countries due to the need to address the primary prevention of socially significant diseases. Gene CYP17A1 is one of the many genes that can participate in the formation of predisposition to the development of stroke.
Aim. To examine association of the single nucleotide polymorphisms rs1004467 CYP17A1 gene with the development of stroke.
Material and methods. The study included 184 patients with stroke (active group; 113 men and 71 women; mean age 55.06±9.40 years), 131 of them with ischemic stroke and 41 with hemorrhagic stroke. The comparison group included 251 people with hypertension without stroke (160 men and 91 women; mean age 59.21±6.62 years) and control group – 157 persons without cardiovascular diseases (106 men and 51 women; mean age 54.94±6.64 years). Study participants underwent clinical (collection of complaints, anamnesis, physical examination), laboratory (blood chemistry, lipid profile) and instrumental (computer tomography of the brain, ultrasound duplex scanning of extraand intracranial blood vessels, electrocardiography, echocardioscopy) examination to verify the diagnosis, molecular genetic study of gene polymorphism СУР17А.
Results. The study established the association of homozygous genotype AA rs1004467 CYP17A1 gene with the risk of stroke, which is confirmed bya statistically significant increase in the number of carriers of homozygous genotype AA in the common allele A rs1004467 CYP17A1 gene in patients of the main group (73.4±3.3%) compared to the control group (61.8±3.9%; p=0.03). Statistically significant increase in the number of carriers of genotype AA rs1004467 of CYP17A1 gene in patients with hemorrhagic stroke (70.7±7.1%) compared with the control (61.8±3.9%; p=0.01) was revealed. There are no statistically significant associations between the rs1004467 genotypes of CYP17A1 gene and the risk factors of stroke (hypercholesterinemia, burdened hereditary, hypertension, increased intima-media thickness of brachiocephalic arteries).
Conclusions. The ability to consider the genetic determinants of brain stroke allows to identify proactively the risk factors of this complex cascade process. Studies of gene polymorphism as a factor of genetic predisposition to various human diseases allow to determine the individual possibilities of optimal therapy for each patient, considering the identified risk factors.
About the Authors
S. Yu. NikulinaRussian Federation
Svetlana Yu. Nikulina – MD, PhD, Professor, Vice-Rector for Academic Affairs, Head of Chair of Internal Medicine N1
Partizana Zheleznyaka ul. 1, Krasnoyarsk, 660022
V. A. Shulman
Russian Federation
Vladimir A. Shulman – MD, PhD, Professor, Chair of Internal Medicine N1
Partizana Zheleznyaka ul. 1, Krasnoyarsk, 660022
A. A. Chernova
Russian Federation
Anna A. Chernova – MD, PhD, Associate Professor, Chair of Outpatient Therapy, Family Medicine and Healthy Lifestyle with a Course of Postgraduate Education, Head of Russian-Italian Laboratory of Medical Genetics, Research Institute of Molecular Medicine and Pathobiochemistry
D. A. Nikulin
Russian Federation
Dmitriy A. Nikulin – MD, PhD, Assistant, Chair of Neurology with Course of Rehabilitation of Postgraduate Education
Partizana Zheleznyaka ul. 1, Krasnoyarsk, 660022
A. A. Semenchukov
Russian Federation
Aleksey A. Semenchukov – Researcher, Russian-Italian Laboratory of Medical Genetics, Research Institute of Molecular Medicine and Pathobiochemistry; Senior Teacher, Chair of Biological Chemistry with Course of Medical, Pharmaceutical and Toxicological Chemistry
Partizana Zheleznyaka ul. 1, Krasnoyarsk, 660022
O. V. Marilovceva
Russian Federation
Olga V. Marilovceva – MD, PhD, Cardiologist
Instrumentalnaya ul. 12, Krasnoyarsk, 660123
S. S. Tret'jakova
Russian Federation
Svetlana S. Tret'jakova – MD, PhD Candidat, Chair of Internal Medicine N1
Partizana Zheleznyaka ul. 1, Krasnoyarsk, 660022
I. I. Lebedeva
Russian Federation
Ilona I. Lebedeva – MD, Post-Graduate Student, Chair of Internal Medicine N1
Partizana Zheleznyaka ul. 1, Krasnoyarsk, 660022
V. N. Maksimov
Russian Federation
Vladimir N. Maksimov – MD, PhD, Professor, Head of the Laboratory of Molecular Genetic Studies of Therapeutic Diseases
B. Bogatkova ul. 175/1, Novosibirsk, 630089
References
1. Bondarenko E.A., Slominskij P.A., Limborskaja S.A. et al. Polymorphic variants of ALOX5AP gene and risk of acute stroke in the Russian population. Genetika. 2011;47(4):570-3. (In Russ.).
2. Hamidova Z.M., Maksjutkina L.M., Abramycheva N.Ju. Optimization of approaches to the prevention of ischemic strokes using the possibilities of pharmacogenetics. Nervnyye Bolezni. 2012;2:21-6. (In Russю)
3. Kuznecova T.Ju., Firsov A.A. The role of genetic predisposition in stroke. Meditsinskiy Al'manakh. 2013;25(1):109-10. (In Russ.)
4. Lee H. Y., Oh B.H. Aging and arterial stiffness. Circ. J. 2010; 74(11): 2257-2262.
5. Zeng Q., Yuan Y., Wang S. et al. Polymorphisms on chromosome 9p21 confer a risk for acute coronary syndrome in a Chinese Han population. Can J Cardiol. 2013;29(8):940-4. doi: 10.1016/j.cjca.2012.11.028.
6. Skvorcova V.I., Kol'cova E.A., Kimel'fel'd E.I. Comparative analysis of risk factors and pathogenetic variants of ischemic stroke in young and old age. Chelovek i yego Zdorov'ye. 2012;3:81-7. (In Russ.)
7. Van Setten J., Isgum I., Smolonska J. et al. Genome-wide association study of coronary and aortic calcification implicates risk loci for coronary artery disease and myocardial infarction. Atherosclerosis. 2013;228(2):400-5. doi: 10.1016/j.atherosclerosis.2013.02.039.
8. Petri C., Wudy S.A., Riepe F.G. et al. 17α-hydroxylase deficiency diagnosed in early infancy caused by a novel mutation of the CYP17A1 gene. Horm Res Paediatr. 2014;81(5):350-5. doi: 10.1159/000357065.
9. Xi B., Shen Y., Zhao X. et al. Association of common variants in/near six genes (ATP2B1, CSK, MTHFR, CYP17A1, STK39 and FGF5) with blood pressure/hypertension risk in Chinese children. J Hum Hypertens. 2014;28(1):32-6. doi: 10.1038/jhh.2013.50.
10. Peng H.M., Liu J., Forsberg S.E. et al. Catalytically relevant electrostatic interactions of cytochrome P450c17 (CYP17A1) and cytochrome b5. J Biol Chem. 2014; 289(49):33838-49. doi: 10.1074/jbc.M114.608919.
11. Estrada D.F., Skinner A.L., Laurence J.S. et al. Human cytochrome P450 17A1 conformational selection: modulation by ligand and cytochrome b5. J Biol Chem. 2014;289(20):14310-20. doi: 10.1074/jbc.M114.560144.
12. Takeuchi F., Isono M., Katsuya T. et al. Blood pressure and hypertension are associated with 7 loci in the Japanese population. Circulation. 2010;121(21):2302-9. doi: 10.1161/CIRCULATIONAHA.109.904664.
13. Nájera N., Garibay N., http://link.springer.com/search?facet-author=%22Pastrana Y. et al. Loss of cytochrome P450 17A1 protein expression in a 17α-hydroxylase/17,20-lyase-deficient 46,XY female caused by two novel mutations in the CYP17A1 genе. Endocr. Pathol. 2009;20(4):249-55. doi: 10.1007/s12022-009-9088-9.
14. Petrunak E.M., DeVore N.M., Porubsky P.R. et al. Structures of human steroidogenic cytochrome P450 17A1 with substrates. J Biol Chem. 2014;289(47):32952-64. doi: 10.1074/jbc.M114. 610998.
15. Traish A.M., Kang H.P., Saad F., Guay A.T. Dehydroepiandrosterone (DHEA)--a precursor steroid or an active hormone in human physiology. J Sex Med. 2011;8(11):2960-82. doi: 10.1111/j.17436109.2011.02523.x.
Review
For citations:
Nikulina S.Yu., Shulman V.A., Chernova A.A., Nikulin D.A., Semenchukov A.A., Marilovceva O.V., Tret'jakova S.S., Lebedeva I.I., Maksimov V.N. Role of Single Nucleotide Polymorphism of СУР17А Gene in the Development of Stroke. Rational Pharmacotherapy in Cardiology. 2018;14(4):488-493. (In Russ.) https://doi.org/10.20996/1819-6446-2018-14-4-488-493