Pyruvate induces mitochondrial biogenesis by a PGC-1α-independent mechanism

被引:47
|
作者
Wilson, Leanne [1 ]
Yang, Qing [1 ]
Szustakowski, Joseph D. [1 ]
Gullicksen, P. Scott [1 ]
Halse, Reza [1 ]
机构
[1] Novartis Inst Biomed Res, Diabet & Metab Dis Area, Cambridge, MA 02139 USA
来源
关键词
oxidative metabolism; peroxisomal proliferator activator receptor-gamma coactivator-1 alpha; mitochondria; muscle;
D O I
10.1152/ajpcell.00428.2006
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Oxidative cells increase mitochondrial mass in response to stimuli such as changes in energy demand or cellular differentiation. This plasticity enables the cell to adapt dynamically to achieve the necessary oxidative capacity. However, the pathways involved in triggering mitochondrial biogenesis are poorly defined. The present study examines the impact of altering energy provision on mitochondrial biogenesis in muscle cells. C2C12 myoblasts were chronically treated with supraphysiological levels of sodium pyruvate for 72 h. Treated cells exhibited increased mitochondrial protein expression, basal respiratory rate, and maximal oxidative capacity. The increase in mitochondrial biogenesis was independent of increases in peroxisomal proliferator activator receptor-gamma coactivator-1 alpha ( PGC-1 alpha) and PGC-1 alpha mRNA expression. To further assess whether PGC-1 alpha expression was necessary for pyruvate action, cells were infected with adenovirus containing shRNA for PGC-1 alpha before treatment with pyruvate. Despite a 70% reduction in PGC-1 alpha mRNA, the effect of pyruvate was preserved. Furthermore, pyruvate induced mitochondrial biogenesis in primary myoblasts from PGC-1 alpha null mice. These data suggest that regulation of mitochondrial biogenesis by pyruvate in myoblasts is independent of PGC-1 alpha, suggesting the existence of a novel energysensing pathway regulating oxidative capacity.
引用
收藏
页码:C1599 / C1605
页数:7
相关论文
共 50 条
  • [21] PGC-1α induced mitochondrial biogenesis in stromal cells underpins mitochondrial transfer to melanoma
    Prakrit R. Kumar
    Mona Saad
    Charlotte Hellmich
    Jayna J. Mistry
    Jamie A. Moore
    Shannon Conway
    Christopher J. Morris
    Kristian M. Bowles
    Marc D. Moncrieff
    Stuart A. Rushworth
    British Journal of Cancer, 2022, 127 : 69 - 78
  • [22] Promotion of mitochondrial biogenesis via the regulation of PARIS and PGC-1α by parkin as a mechanism of neuroprotection by carnosic acid
    Lin, Chia-Yuan
    Huang, Yan-Ning
    Fu, Ru-Huei
    Liao, Yu-Hsin
    Kuo, Tzu-Yu
    Tsai, Chia-Wen
    PHYTOMEDICINE, 2021, 80
  • [23] Activation of the mTORC1/PGC-1 axis promotes mitochondrial biogenesis and induces cellular senescence in the lung epithelium
    Summer, Ross
    Shaghaghi, Hoora
    Schriner, DeLeila
    Roque, Willy
    Sales, Dominic
    Cuevas-Mora, Karina
    Desai, Vilas
    Bhushan, Alok
    Ramirez, Maria I.
    Romero, Freddy
    AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 2019, 316 (06) : L1049 - L1060
  • [24] Muscle immobilization and remobilization downregulates PGC-1α signaling and the mitochondrial biogenesis pathway
    Kang, Chounghun
    Ji, Li Li
    JOURNAL OF APPLIED PHYSIOLOGY, 2013, 115 (11) : 1618 - 1625
  • [25] Mechanisms controlling mitochondrial biogenesis and respiration through the thermogenic coactivator PGC-1
    Wu, ZD
    Puigserver, P
    Andersson, U
    Zhang, CY
    Adelmant, G
    Mootha, V
    Troy, A
    Cinti, S
    Lowell, B
    Scarpulla, RC
    Spiegelman, BM
    CELL, 1999, 98 (01) : 115 - 124
  • [26] Effects of Resveratrol and SIRT1 on PGC-1α Activity and Mitochondrial Biogenesis: A Reevaluation
    Higashida, Kazuhiko
    Kim, Sang Hyun
    Jung, Su Ryun
    Asaka, Meiko
    Holloszy, John O.
    Han, Dong-Ho
    PLOS BIOLOGY, 2013, 11 (07):
  • [27] SUMO-specific Protease 1 Regulates Mitochondrial Biogenesis through PGC-1α
    Cai, Rong
    Yu, Tingting
    Huang, Chao
    Xia, Xuefeng
    Liu, Xiaobing
    Gu, Jianmin
    Xue, Song
    Yeh, Edward T. H.
    Cheng, Jinke
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (53) : 44464 - 44470
  • [28] Metabolic control of mitochondrial biogenesis through the PGC-1 family regulatory network
    Scarpulla, Richard C.
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2011, 1813 (07): : 1269 - 1278
  • [29] PGC-1α regulates mitochondrial properties beyond biogenesis with aging and exercise training
    Halling, Jens Frey
    Jensen, Henrik
    Nohr-Meldgaard, Jacob
    Buch, Bjorg Thiellesen
    Christensen, Natascha Masselkhi
    Gudiksen, Anders
    Ringholm, Stine
    Neufer, P. Darrell
    Prats, Clara
    Pilegaard, Henriette
    AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2019, 317 (03): : E513 - E525
  • [30] More than mitochondrial biogenesis: alternative roles of PGC-1α in exercise adaptation
    Smiles, William J.
    Camera, Donny M.
    JOURNAL OF PHYSIOLOGY-LONDON, 2015, 593 (09): : 2115 - 2117