Promising Strategy of mPTP Modulation in Cancer Therapy: An Emerging Progress and Future Insight
Mohammad Waseem1, Bi-Dar Wang1,2
1Department of Pharmaceutical Sciences, School of Pharmacy and Health Professions, University of Maryland Eastern Shore, Princess Anne, MD 21853, USA.
Abstract:
Cancer has been progressively a major global health concern. With this developing global concern, cancer determent is one of the most significant public health challenges of this era. To date, the scientific community undoubtedly highlights mitochondrial dysfunction as a hallmark of cancer cells. Permeabilization of the mitochondrial membranes has been implicated as the most considerable footprint in apoptosis-mediated cancer cell death. Under the condition of mitochondrial calcium overload, exclusively mediated by oxidative stress, an opening of a nonspecific channel with a well-defined diameter in mitochondrial membrane allows free exchange between the mitochondrial matrix and the extra mitochondrial cytosol of solutes and proteins up to 1.5 kDa. Such a channel/nonspecific pore is recognized as the mitochondrial permeability transition pore (mPTP). mPTP has been established for regulating apoptosis-mediated cancer cell death. It has been evident that mPTP is critically linked with the glycolytic enzyme hexokinase II to defend cellular death and reduce cytochrome c release. However, elevated mitochondrial Ca2+ loading, oxidative stress, and mitochondrial depolarization are critical factors leading to mPTP opening/activation. Although the exact mechanism underlying mPTP-mediated cell death remains elusive, mPTP-mediated apoptosis machinery has been considered as an important clamp and plays a critical role in the pathogenesis of several types of cancers. In this review, we focus on structure and regulation of the mPTP complex-mediated apoptosis mechanisms and follow with a comprehensive discussion addressing the development of novel mPTP-targeting drugs/molecules in cancer treatment.
Insights
Mitochondrial permeability transition pore (mPTP) dysfunction is key in cancer cell death. Targeting mPTP offers a novel therapeutic strategy for cancer treatment, impacting apoptosis and cell survival.
Area of Science:
- Biochemistry
- Cell Biology
- Oncology
Background:
- Mitochondrial dysfunction is a hallmark of cancer.
- Mitochondrial membrane permeabilization is crucial for apoptosis-mediated cancer cell death.
- The mitochondrial permeability transition pore (mPTP) regulates this process.
Purpose of the Study:
- To review the structure and regulation of mPTP complex-mediated apoptosis.
- To discuss novel mPTP-targeting drugs for cancer treatment.
Main Methods:
- Literature review focusing on mPTP structure, regulation, and function in cancer.
- Analysis of existing and potential therapeutic strategies targeting mPTP.
Main Results:
- mPTP opening is regulated by mitochondrial calcium overload, oxidative stress, and depolarization.
- mPTP interacts with hexokinase II, influencing apoptosis and cell survival.
- mPTP plays a critical role in the pathogenesis of various cancers.
Conclusions:
- mPTP is a significant regulator of apoptosis in cancer.
- Targeting mPTP represents a promising avenue for developing new cancer therapeutics.
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