VDAC Regulation: A Mitochondrial Target to Stop Cell Proliferation

被引:104
作者
Fang, Diana [1 ]
Maldonado, Eduardo N. [1 ,2 ]
机构
[1] Med Univ South Carolina, Charleston, SC 29425 USA
[2] Med Univ South Carolina, Hollings Canc Ctr, Charleston, SC 29425 USA
来源
ADVANCES IN CANCER RESEARCH, VOL 138 | 2018年 / 138卷
关键词
DEPENDENT ANION CHANNEL; PERMEABILITY TRANSITION; MEMBRANE PERMEABILITY; OUTER-MEMBRANE; CANCER-CELLS; OXIDATIVE-PHOSPHORYLATION; LACTATE METABOLISM; LIPID-PEROXIDATION; GLYCOGEN-SYNTHASE; HYDROGEN-PEROXIDE;
D O I
10.1016/bs.acr.2018.02.002
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cancer metabolism is emerging as a chemotherapeutic target. Enhanced glycolysis and suppression of mitochondrial metabolism characterize the Warburg phenotype in cancer cells. The flux of respiratory substrates, ADP, and Pi into mitochondria and the release of mitochondrial ATP to the cytosol occur through voltage-dependent anion channels (VDACs) located in the mitochondrial outer membrane. Catabolism of respiratory substrates in the Krebs cycle generates NADH and FADH(2) that enter the electron transport chain (ETC) to generate a proton motive force that maintains mitochondrial membrane potential (Delta Psi) and is utilized to generate ATP. The ETC is also the major cellular source of mitochondrial reactive oxygen species (ROS). alpha ss-Tubulin heterodimers decrease VDAC conductance in lipid bilayers. High constitutive levels of cytosolic free tubulin in intact cancer cells close VDAC decreasing mitochondrial Delta Psi and mitochondrial metabolism. The VDAC-tubulin interaction regulates VDAC opening and globally controls mitochondrial metabolism, ROS formation, and the intracellular flow of energy. Erastin, a VDAC-binding molecule lethal to some cancer cell types, and erastin-like compounds identified in a high-throughput screening antagonize the inhibitory effect of tubulin on VDAC. Reversal of tubulin inhibition of VDAC increases VDAC conductance and the flux of metabolites into and out of mitochondria. VDAC opening promotes a higher mitochondrial Delta Psi and a global increase in mitochondrial metabolism leading to high cytosolic ATP/ADP ratios that inhibit glycolysis. VDAC opening also increases ROS production causing oxidative stress that, in turn, leads to mitochondrial dysfunction, bioenergetic failure, and cell death. In summary, antagonism of the VDAC-tubulin interaction promotes cell death by a "double-hit model" characterized by reversion of the proproliferative Warburg phenotype (anti-Warburg) and promotion of oxidative stress.
引用
收藏
页码:41 / 69
页数:29
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