Mitochondrial energetics in the kidney

被引:1229
作者
Bhargava, Pallavi [1 ]
Schnellmann, Rick G. [1 ]
机构
[1] Univ Arizona, Coll Pharm, Dept Pharmacol & Toxicol, Drachman Hall,Room B307,1295 N Martin Ave, Tucson, AZ 85721 USA
关键词
ACTIVATED-RECEPTOR-GAMMA; TUBULAR EPITHELIAL-CELLS; DYNAMIN-RELATED PROTEIN; DOMINANT OPTIC ATROPHY; FATTY-ACID OXIDATION; ACUTE-RENAL-FAILURE; CARDIOVASCULAR EVENTS; TRANSCRIPTION FACTOR; DIABETES-MELLITUS; ENERGY-METABOLISM;
D O I
10.1038/nrneph.2017.107
中图分类号
R5 [内科学]; R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
100201 [内科学]; 100221 [泌尿外科学];
摘要
The kidney requires a large number of mitochondria to remove waste from the blood and regulate fluid and electrolyte balance. Mitochondria provide the energy to drive these important functions and can adapt to different metabolic conditions through a number of signalling pathways (for example, mechanistic target of rapamycin (mTOR) and AMP-activated protein kinase (AMPK) pathways) that activate the transcriptional co-activator peroxisome proliferator-activated receptor-. co-activator 1 alpha (PGC1 alpha), and by balancing mitochondrial dynamics and energetics to maintain mitochondrial homeostasis. Mitochondrial dysfunction leads to a decrease in ATP production, alterations in cellular functions and structure, and the loss of renal function. Persistent mitochondrial dysfunction has a role in the early stages and progression of renal diseases, such as acute kidney injury (AKI) and diabetic nephropathy, as it disrupts mitochondrial homeostasis and thus normal kidney function. Improving mitochondrial homeostasis and function has the potential to restore renal function, and administering compounds that stimulate mitochondrial biogenesis can restore mitochondrial and renal function in mouse models of AKI and diabetes mellitus. Furthermore, inhibiting the fission protein dynamin 1-like protein (DRP1) might ameliorate ischaemic renal injury by blocking mitochondrial fission.
引用
收藏
页码:629 / 646
页数:18
相关论文
共 228 条
[31]
Mapping time-course mitochondrial adaptations in the kidney in experimental diabetes [J].
Coughlan, Melinda T. ;
Tuong-Vi Nguyen ;
Penfold, Sally A. ;
Higgins, Gavin C. ;
Thallas-Bonke, Vicki ;
Tan, Sih Min ;
Van Bergen, Nicole J. ;
Sourris, Karly C. ;
Harcourt, Brooke E. ;
Thorburn, David R. ;
Trounce, Ian A. ;
Cooper, Mark E. ;
Forbes, Josephine M. .
CLINICAL SCIENCE, 2016, 130 (09) :711-720
[32]
mTOR controls mitochondrial oxidative function through a YY1-PGC-1α transcriptional complex [J].
Cunningham, John T. ;
Rodgers, Joseph T. ;
Arlow, Daniel H. ;
Vazquez, Francisca ;
Mootha, Vamsi K. ;
Puigserver, Pere .
NATURE, 2007, 450 (7170) :736-U12
[33]
Bardoxolone Methyl in Type 2 Diabetes and Stage 4 Chronic Kidney Disease [J].
de Zeeuw, Dick ;
Akizawa, Tadao ;
Audhya, Paul ;
Bakris, George L. ;
Chin, Melanie ;
Christ-Schmidt, Heidi ;
Goldsberry, Angie ;
Houser, Mark ;
Krauth, Melissa ;
Heerspink, Hiddo J. Lambers ;
McMurray, John J. ;
Meyer, Colin J. ;
Parving, Hans-Henrik ;
Remuzzi, Giuseppe ;
Toto, Robert D. ;
Vaziri, Nosratola D. ;
Wanner, Christoph ;
Wittes, Janet ;
Wrolstad, Danielle ;
Chertow, Glenn M. .
NEW ENGLAND JOURNAL OF MEDICINE, 2013, 369 (26) :2492-2503
[34]
Nuclear gene OPA1, encoding a mitochondrial dynamin-related protein, is mutated in dominant optic atrophy [J].
Delettre, C ;
Lenaers, G ;
Griffoin, JM ;
Gigarel, N ;
Lorenzo, C ;
Belenguer, P ;
Pelloquin, L ;
Grosgeorge, J ;
Turc-Carel, C ;
Perret, E ;
Astarie-Dequeker, C ;
Lasquellec, L ;
Arnaud, B ;
Ducommun, B ;
Kaplan, J ;
Hamel, CP .
NATURE GENETICS, 2000, 26 (02) :207-210
[35]
OPA1 (Kjer type) dominant optic atrophy: A novel mitochondrial disease [J].
Delettre, C ;
Lenaers, G ;
Pelloquin, L ;
Belenguer, P ;
Hamel, CP .
MOLECULAR GENETICS AND METABOLISM, 2002, 75 (02) :97-107
[36]
Ketohexokinase: Expression and Localization of the Principal Fructose-metabolizing Enzyme [J].
Diggle, Christine P. ;
Shires, Michael ;
Leitch, Derek ;
Brooke, David ;
Carr, Ian M. ;
Markham, Alex F. ;
Hayward, Bruce E. ;
Asipu, Aruna ;
Bonthron, David T. .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 2009, 57 (08) :763-774
[37]
(De)constructing mitochondria: What for? [J].
Dimmer, Kai S. ;
Scorrano, Luca .
PHYSIOLOGY, 2006, 21 :233-241
[38]
Doyle J.F., 2016, CRIT CARE, V20
[39]
Autophagy, Innate Immunity and Tissue Repair in Acute Kidney Injury [J].
Duann, Pu ;
Lianos, Elias A. ;
Ma, Jianjie ;
Lin, Pei-Hui .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2016, 17 (05)
[40]
AMPK dysregulation promotes diabetes-related reduction of superoxide and mitochondrial function [J].
Dugan, Laura L. ;
You, Young-Hyun ;
Ali, Sameh S. ;
Diamond-Stanic, Maggie ;
Miyamoto, Satoshi ;
DeCleves, Anne-Emilie ;
Andreyev, Aleksander ;
Quach, Tammy ;
Ly, San ;
Shekhtman, Grigory ;
Nguyen, William ;
Chepetan, Andre ;
Le, Thuy P. ;
Wang, Lin ;
Xu, Ming ;
Paik, Kacie P. ;
Fogo, Agnes ;
Viollet, Benoit ;
Murphy, Anne ;
Brosius, Frank ;
Naviaux, Robert K. ;
Sharma, Kumar .
JOURNAL OF CLINICAL INVESTIGATION, 2013, 123 (11) :4888-4899