Metabolomics in Angiotensin II-Induced Cardiac Hypertrophy

被引:39
作者
Mervaala, Eero [1 ]
Biala, Agnieszka [1 ]
Merasto, Saara [1 ]
Lempiainen, Juha [1 ]
Mattila, Ismo [3 ]
Martonen, Essi [1 ]
Eriksson, Ove [1 ]
Louhelainen, Marjut [1 ]
Finckenberg, Piet [1 ]
Kaheinen, Petri [1 ]
Muller, Dominik N. [4 ]
Luft, Friedrich C. [4 ]
Lapatto, Risto [2 ]
Oresic, Matej [3 ]
机构
[1] Univ Helsinki, Inst Biomed, FI-00014 Helsinki, Finland
[2] Univ Helsinki, Hosp Children & Adolescents, FI-00014 Helsinki, Finland
[3] VTT Tech Res Ctr Finland, Espoo, Finland
[4] Max Delbruck Ctr, Expt & Clin Res Ctr, Berlin, Germany
关键词
hypertrophy; metabolomics; angiotensin II; hypertension; oxidative stress; FAILING HEART; HUMAN RENIN; MITOCHONDRIAL BIOGENESIS; ENDOTHELIAL DYSFUNCTION; CALORIE RESTRICTION; GENE-EXPRESSION; ORGAN DAMAGE; HYPERTENSION; RATS; MICE;
D O I
10.1161/HYPERTENSIONAHA.109.145490
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
Angiotensin II (Ang II) induces mitochondrial dysfunction. We tested whether Ang II alters the "metabolomic" profile. We harvested hearts from 8-week-old double transgenic rats harboring human renin and angiotensinogen genes (dTGRs) and controls (Sprague-Dawley), all with or without Ang II type 1 receptor (valsartan) blockade. We used gas chromatography coupled with time-of-flight mass spectrometry to detect 247 intermediary metabolites. We used a partial least-squares discriminate analysis and identified 112 metabolites that differed significantly after corrections (false discovery rate q<0.05). We found great differences in the use of fatty acids as an energy source, namely, decreased levels of octanoic, oleic, and linoleic acids in dTGR (all P<0.01). The increase in cardiac hypoxanthine levels in dTGRs suggested an increase in purine degradation, whereas other changes supported an increased ketogenic amino acid tyrosine level, causing energy production failure. The metabolomic profile of valsartan-treated dTGRs more closely resembled Sprague-Dawley rats than untreated dTGRs. Mitochondrial respiratory chain activity of cytochrome C oxidase was decreased in dTGRs, whereas complex I and complex II were unaltered. Mitochondria from dTGR hearts showed morphological alterations suggesting increased mitochondrial fusion. Cardiac expression of the redox-sensitive and the cardioprotective metabolic sensor sirtuin 1 was increased in dTGRs. Interestingly, valsartan changed the level of 33 metabolites and induced mitochondrial biogenesis in Sprague-Dawley rats. Thus, distinct patterns of cardiac substrate use in Ang II-induced cardiac hypertrophy are associated with mitochondrial dysfunction. The finding underscores the importance of Ang II in the regulation of mitochondrial biogenesis and cardiac metabolomics, even in healthy hearts. (Hypertension. 2010;55[part2]:508-515.)
引用
收藏
页码:508 / 515
页数:8
相关论文
共 38 条
[31]   Rapid suppression of mitochondrial permeability transition by methylglyoxal - Role of reversible arginine modification [J].
Speer, O ;
Morkunaite-Haimi, S ;
Liobikas, J ;
Franck, M ;
Hensbo, L ;
Linder, MD ;
Kinnunen, PKJ ;
Wallimann, T ;
Eriksson, O .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (37) :34757-34763
[32]   Myocardial substrate metabolism in the normal and failing heart [J].
Stanley, WC ;
Recchia, FA ;
Lopaschuk, GD .
PHYSIOLOGICAL REVIEWS, 2005, 85 (03) :1093-1129
[33]   A direct approach to false discovery rates [J].
Storey, JD .
JOURNAL OF THE ROYAL STATISTICAL SOCIETY SERIES B-STATISTICAL METHODOLOGY, 2002, 64 :479-498
[34]   Metabolomic Profiling Reveals Distinct Patterns of Myocardial Substrate Use in Humans With Coronary Artery Disease or Left Ventricular Dysfunction During Surgical Ischemia/Reperfusion [J].
Turer, Aslan T. ;
Stevens, Robert D. ;
Bain, James R. ;
Muehlbauer, Michael J. ;
van der Westhuizen, Johannes ;
Mathew, Joseph P. ;
Schwinn, Debra A. ;
Glower, Donald D. ;
Newgard, Christopher B. ;
Podgoreanu, Mihai V. .
CIRCULATION, 2009, 119 (13) :1736-U88
[35]   Immunology in Hypertension, Preeclampsia, and Target-Organ Damage [J].
Verlohren, Stefan ;
Muller, Dominik N. ;
Luft, Friedrich C. ;
Dechend, Ralf .
HYPERTENSION, 2009, 54 (03) :439-443
[36]   Impaired DNA damage response, genome instability, and tumorigenesis in SIRT1 mutant mice [J].
Wang, Rui-Hong ;
Sengupta, Kundan ;
Li, Cuiling ;
Kim, Hyun-Seok ;
Cao, Liu ;
Xiao, Cuiying ;
Kim, Sangsoo ;
Xu, Xiaoling ;
Zheng, Yin ;
Chilton, Beverly ;
Jia, Rong ;
Zheng, Zhi-Ming ;
Appella, Ettore ;
Wang, Xin Wei ;
Ried, Thomas ;
Deng, Chu-Xia .
CANCER CELL, 2008, 14 (04) :312-323
[37]   Cardiac gene expression profile in rats with terminal heart failure and cachexia [J].
Wellner, M ;
Dechend, R ;
Park, JK ;
Shagdarsuren, E ;
Al-Saadi, N ;
Kirsch, T ;
Gratze, P ;
Schneider, W ;
Meiners, S ;
Fiebeler, A ;
Haller, H ;
Luft, FC ;
Muller, DN .
PHYSIOLOGICAL GENOMICS, 2005, 20 (03) :256-267
[38]   The type III histone deacetylase Sirt1 is essential for maintenance of T cell tolerance in mice [J].
Zhang, Jinping ;
Lee, Sang-Myeong ;
Shannon, Stephen ;
Gao, Beixue ;
Chen, Weimin ;
Chen, An ;
Divekar, Rohit ;
McBurney, Michael W. ;
Braley-Mullen, Helen ;
Zaghouani, Habib ;
Fang, Deyu .
JOURNAL OF CLINICAL INVESTIGATION, 2009, 119 (10) :3048-3058