Mitochondrial Mutations are Associated with Atherosclerotic Lesions in the Human Aorta
Somatic mutations of the human mitochondrial genome can be a possible determinant of atherosclerosis. To test this possibility, forty mitochondrial mutations were analyzed in the present study in order to see which of these mutations might be associated with atherosclerosis. Ten mitochondrial mutati...
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doaj-d42185a37ccd4699b302c76e06ec4a182020-11-24T23:02:28ZengHindawi LimitedClinical and Developmental Immunology1740-25221740-25302012-01-01201210.1155/2012/832464832464Mitochondrial Mutations are Associated with Atherosclerotic Lesions in the Human AortaIgor A. Sobenin0Margarita A. Sazonova1Anton Y. Postnov2Yuri V. Bobryshev3Alexander N. Orekhov4Russian Cardiology Research and Production Complex, 121552 Moscow, RussiaRussian Cardiology Research and Production Complex, 121552 Moscow, RussiaRussian Cardiology Research and Production Complex, 121552 Moscow, RussiaInstitute for Atherosclerosis Research, Skolkovo Innovative Centre, 143025 Moscow, RussiaInstitute of General Pathology and Pathophysiology, Russian Academy of Medical Sciences, 125315 Moscow, RussiaSomatic mutations of the human mitochondrial genome can be a possible determinant of atherosclerosis. To test this possibility, forty mitochondrial mutations were analyzed in the present study in order to see which of these mutations might be associated with atherosclerosis. Ten mitochondrial mutations belonging to mitochondrial genes MT-RNR1 (rRNA 12S); MT-TL1 (tRNA-Leu, recognizes UUR); MT-TL2 (tRNA-Leu, recognizes CUN); MT-ND1, MT-ND2, MT-ND5, and MT-ND6 (subunits 1, 2, 5, and 6, respectively, of NADH dehydrogenase); and MT-CYB (cytochrome b) were potentially associated with atherosclerosis. From 29% (2 of 7 aortic samples) upto 86% (6 of 7 aortic samples) of aortic samples had a significant difference between atherosclerotic plaques and unaffected tissue, with the respect to the level of heteroplasmy for each mutation. Further, the homogenates of affected and normal intimae of 22 aortas were compared to reveal the average level of heteroplasmy for the above-mentioned 10 mutations. For five mutations, the mean level of heteroplasmy was significantly different in atherosclerotic intimal homogenates in comparison with the unaffected tissue. These mutations were A1555G, C3256T, T3336C, G13513A, and G15059A. Thus, it was demonstrated that at least five mitochondrial mutations occurring in MT-RNR1, MT-TL1, MT-ND2, MT-ND5, and MT-CYB genes are associated with atherosclerosis.http://dx.doi.org/10.1155/2012/832464 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Igor A. Sobenin Margarita A. Sazonova Anton Y. Postnov Yuri V. Bobryshev Alexander N. Orekhov |
spellingShingle |
Igor A. Sobenin Margarita A. Sazonova Anton Y. Postnov Yuri V. Bobryshev Alexander N. Orekhov Mitochondrial Mutations are Associated with Atherosclerotic Lesions in the Human Aorta Clinical and Developmental Immunology |
author_facet |
Igor A. Sobenin Margarita A. Sazonova Anton Y. Postnov Yuri V. Bobryshev Alexander N. Orekhov |
author_sort |
Igor A. Sobenin |
title |
Mitochondrial Mutations are Associated with Atherosclerotic Lesions in the Human Aorta |
title_short |
Mitochondrial Mutations are Associated with Atherosclerotic Lesions in the Human Aorta |
title_full |
Mitochondrial Mutations are Associated with Atherosclerotic Lesions in the Human Aorta |
title_fullStr |
Mitochondrial Mutations are Associated with Atherosclerotic Lesions in the Human Aorta |
title_full_unstemmed |
Mitochondrial Mutations are Associated with Atherosclerotic Lesions in the Human Aorta |
title_sort |
mitochondrial mutations are associated with atherosclerotic lesions in the human aorta |
publisher |
Hindawi Limited |
series |
Clinical and Developmental Immunology |
issn |
1740-2522 1740-2530 |
publishDate |
2012-01-01 |
description |
Somatic mutations of the human mitochondrial genome can be a possible determinant of atherosclerosis. To test this possibility, forty mitochondrial mutations were analyzed in the present study in order to see which of these mutations might be associated with atherosclerosis. Ten mitochondrial mutations belonging to mitochondrial genes MT-RNR1 (rRNA 12S); MT-TL1 (tRNA-Leu, recognizes UUR); MT-TL2 (tRNA-Leu, recognizes CUN); MT-ND1, MT-ND2, MT-ND5, and MT-ND6 (subunits 1, 2, 5, and 6, respectively, of NADH dehydrogenase); and MT-CYB (cytochrome b) were potentially associated with atherosclerosis. From 29% (2 of 7 aortic samples) upto 86% (6 of 7 aortic samples) of aortic samples had a significant difference between atherosclerotic plaques and unaffected tissue, with the respect to the level of heteroplasmy for each mutation. Further, the homogenates of affected and normal intimae of 22 aortas were compared to reveal the average level of heteroplasmy for the above-mentioned 10 mutations. For five mutations, the mean level of heteroplasmy was significantly different in atherosclerotic intimal homogenates in comparison with the unaffected tissue. These mutations were A1555G, C3256T, T3336C, G13513A, and G15059A. Thus, it was demonstrated that at least five mitochondrial mutations occurring in MT-RNR1, MT-TL1, MT-ND2, MT-ND5, and MT-CYB genes are associated with atherosclerosis. |
url |
http://dx.doi.org/10.1155/2012/832464 |
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