Linking bioenergetic function of mitochondria to tissue-specific molecular fingerprints

被引:28
|
作者
Kappler, Lisa [1 ]
Hoene, Miriam [1 ]
Hu, Chunxiu [2 ]
von Toerne, Christine [3 ]
Li, Jia [1 ,4 ]
Bleher, Daniel [1 ]
Hoffmann, Christoph [1 ]
Boehm, Anja [5 ,6 ]
Kollipara, Laxmikanth [7 ]
Zischka, Hans [8 ,9 ]
Koenigsrainer, Alfred [10 ,11 ,12 ]
Haering, Hans-Ulrich [1 ,5 ,6 ]
Peter, Andreas [1 ,5 ,6 ]
Xu, Guowang [2 ]
Sickmann, Albert [7 ,13 ,14 ]
Hauck, Stefanie M. [3 ,6 ]
Weigert, Cora [1 ,5 ,6 ]
Lehmann, Rainer [1 ,5 ,6 ]
机构
[1] Univ Hosp Tuebingen, Inst Clin Chem & Pathobiochem, Dept Diagnost Lab Med, Hoppe Seyler Str 3, D-72076 Tubingen, Germany
[2] Chinese Acad Sci, Dalian Inst Chem Phys, Key Lab Separat Sci Analyt Chem, Dalian, Peoples R China
[3] Helmholtz Ctr Munich, Res Unit Prot Sci, Munich, Germany
[4] Chinese Acad Agr Sci, Tea Res Inst, Minist Agr, Key Lab Tea Biol & Resources Utilizat, Hangzhou, Zhejiang, Peoples R China
[5] Univ Tubingen, Helmholtz Ctr Munich, Inst Diabet Res & Metab Dis, Tubingen, Germany
[6] German Ctr Diabet Res, Tubingen, Germany
[7] Leibniz Inst Analyt Wissensch ISAS, Dortmund, Germany
[8] German Res Ctr Environm Hlth GmbH, Helmholtz Ctr Munich, Inst Mol Toxicol & Pharmacol, Neuherberg, Germany
[9] Tech Univ Munich, Inst Toxicol & Environm Hyg, Munich, Germany
[10] Univ Hosp Tuebingen, Dept Gen Visceral & Transplant Surg, Tubingen, Germany
[11] German Canc Consortium DKTK, Tubingen, Germany
[12] German Canc Res Ctr DKFZ Partner Site, Tubingen, Germany
[13] Ruhr Univ Bochum, Med Proteom Ctr, Bochum, Germany
[14] Univ Aberdeen, Coll Phys Sci, Dept Chem, Aberdeen, Scotland
基金
中国国家自然科学基金;
关键词
cardiolipins; liver; mitochondria; multi-omics; muscle; SKELETAL-MUSCLE; RESPIRATORY-CHAIN; OXIDATIVE-PHOSPHORYLATION; SUPERCOMPLEX FORMATION; LINOLEIC-ACID; CARDIOLIPIN; LIVER; PHOSPHOLIPIDS; GLUCONEOGENESIS; DYSFUNCTION;
D O I
10.1152/ajpendo.00088.2019
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Mitochondria are dynamic organelles with diverse functions in tissues such as liver and skeletal muscle. To unravel the mitochondrial contribution to tissue-specific physiology, we performed a systematic comparison of the mitochondrial proteome and lipidome of mice and assessed the consequences hereof for respiration. Liver and skeletal muscle mitochondrial protein composition was studied by data-independent ultra-high-performance (UHP)LC-MS/MS-proteomics, and lipid profiles were compared by UIIPLC-MS/MS lipidomics. Mitochondrial function was investigated by high-resolution respirometry in samples from mice and humans. Enzymes of pyruvate oxidation as well as several subunits of complex I, III, and ATP synthase were more abundant in muscle mitochondria. Muscle mitochondria were enriched in cardiolipins associated with higher oxidative phosphorylation capacity and flexibility, in particular CL(18:2)(4) and 22:6-containing cardiolipins. In contrast, protein equipment of liver mitochondria indicated a shuttling of complex I substrates toward gluconeogenesis and ketogenesis and a higher preference for electron transfer via the flavoprotein quinone oxidoreductase pathway. Concordantly, muscle and liver mitochondria showed distinct respiratory substrate preferences. Muscle respired significantly more on the complex I substrates pyruvate and glutamate, whereas in liver maximal respiration was supported by complex II substrate succinate. This was a consistent finding in mouse liver and skeletal muscle mitochondria and human samples. Muscle mitochondria are tailored to produce ATP with a high capacity for complex I-linked substrates. Liver mitochondria are more connected to biosynthetic pathways, preferring fatty acids and succinate for oxidation. The physiologic diversity of mitochondria may help to understand tissue-specific disease pathologies and to develop therapies targeting mitochondrial function.
引用
收藏
页码:E374 / E387
页数:14
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