The Role of Mitochondrial Ion Channels in the Evolution of AnticancerDrug Resistance

细胞生物学 线粒体凋亡诱导通道 线粒体 电压依赖性阴离子通道 细胞色素c 线粒体通透性转换孔 线粒体内膜 生物 粒体自噬 钾通道 线粒体膜转运蛋白 MFN1型 细胞凋亡 凋亡体 化学 癌细胞 离子通道 生物化学 膜电位 活性氧 程序性细胞死亡 跨膜通道 内膜转移酶 内膜 膜透性 Uniporter公司 品脱1 胞浆 农奴 激酶 电压依赖性钙通道 氧化磷酸化 N型钙通道 线粒体载体
作者
Swaroop Kumar Pandey,Ayush Kulshreshtha,Anuja Mishra
出处
期刊:Current Protein & Peptide Science [Bentham Science Publishers]
卷期号:27
标识
DOI:10.2174/0113892037410334251021155546
摘要

Apoptosis, drug resistance, and cellular metabolism are all crucially regulated by mitochondria, especially through ion channels and translocases embedded in their membranes. The outer mitochondrial membrane (OMM) contains the voltage dependent anion channel (VDAC), which acts with proteins such as hexokinase II and BAX to regulate apoptosis and metabolic reprogramming in cancer while facilitating the flow of important metabolites and ions. Anti apoptotic proteins like Bcl2 and Mcl1 closely regulate the mitochondrial apoptosis induced channel (MAC), which is created by pro-apoptotic Bcl2 family members BAX and BAK and controls cytochrome c release when overexpressed, leading to drug resistance. Furthermore, the translocase of the outer membrane (TOM) complex, which regulates mitochondrial protein import, is frequently dysregulated in cancers. Numerous ion channels, such as potassium channels, the mitochondrial calcium uniporter (MCU), and the mitochondrial permeability transition pore (m-PTP), are found within the inner mitochondrial membrane (IMM) and regulate important functions like ATP synthesis, the control of reactive oxygen species (ROS), and apoptotic signaling. Cancer cells can avoid apoptosis, adapt to environmental stress, and become resistant to treatments like doxorubicin and cisplatin when these channels are dysregulated. Metabolic flexibility and antioxidant defense are improved by overexpressing or functionally modifying IMM potassium channels and calcium transporters. Additionally, drug resistance is facilitated by increased mitophagy and anti-apoptotic proteins that inhibit m-PTP opening. This review discusses the functions of mitochondrial ion channels.
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