4.5 Article

Structural and functional remodeling of mitochondria as an adaptive response to energy deprivation

期刊

出版社

ELSEVIER
DOI: 10.1016/j.bbabio.2021.148393

关键词

Cancer cells; Cellular ATP; 2-deoxy-D-glucose; Energy stress; Glucose metabolism; Mitochondria; Mitochondrial function; Mitochondrial dynamics/network; Mitochondrial membrane potential

资金

  1. MFF-Tirol (Project 291)
  2. Tiroler Wissenschaftsforderung
  3. Austrian Science Fund (FWF) [I3089-B28]
  4. Tirol-Kliniken GmbH
  5. National Institute of General Medical Sciences of the National Institutes of Health (NIH) [SC1GM128210]

向作者/读者索取更多资源

Inhibition of glycolysis leads to ATP depletion in various cells but does not affect cell viability. Treatment with 2-DG enhances mitochondrial respiration and membrane potential while altering mitochondrial morphology towards network organization. Additionally, activation of AMPK and changes in mitochondrial fusion proteins were observed after 2-DG treatment.
Cancer cells bioenergetics is more dependent on glycolysis than mitochondrial oxidative phosphorylation, a phenomenon known as the Warburg Effect. It has been proposed that inhibition of glycolysis may selectively affect cancer cells. However, the effects of glycolysis inhibition on mitochondrial function and structure in cancer cells are not completely understood. Here, we investigated the comparative effects of 2-deoxy-D-glucose (2-DG, a glucose analogue, which suppresses cellular glycolysis) on cellular bioenergetics in human colon cancer DLD-1 cells, smooth muscle cells, human umbilical vein endothelial cells and HL-1 cardiomyocytes. In all cells, 2-DG treatment resulted in significant ATP depletion, however, the cell viability remained unchanged. Also, we did not observe the synergistic effects of 2-DG with anticancer drugs doxorubicin and 5-fluorouracil. Instead, after 2-DG treatment and ATP depletion, mitochondrial respiration and membrane potential were significantly enhanced and mitochondrial morphology changed in the direction of more network organization. Analysis of protein expression demonstrated that 2-DG treatment induced an activation of AMPK (elevated pAMPK/AMPK ratio), increased mitochondrial fusion (mitofusins 1 and 2) and decreased fission (Drp1) proteins. In conclusion, this study suggests a strong link between respiratory function and structural organization of mitochondria in the cell. We propose that the functionality of the mitochondrial network is enhanced compared to disconnected mitochondria.

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