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Strategies for Tracking Anastasis, A Cell Survival Phenomenon that Reverses Apoptosis
Published on: February 16, 2015
Resistance of rho(0) cells against apoptosis
Myung-Shik Lee1, Ja-Young Kim, Sun Young Park
1Department of Medicine, Samsung Medical Center, Sungkyunkwan University School of Medicine, 50 Irwon-dong Kangnam-ku, Seoul 135-710, Korea. mslee@smc.samsung.co.kr
Abstract:
Mitochondrion is one of the master players in both apoptosis and necrosis. However, most previous articles report that mitochondrial DNA-depleted cells without oxidative phosphorylation underwent apoptosis by several apoptotic effectors as efficiently as their parental cells, suggesting that intact mitochondrial function is dispensable for the progression of apoptosis. We studied the role of mitochondrial function in several apoptosis models. TRAIL, a recently identified member of the TNF family with cytotoxicity on a wide variety of transformed cells, killed SK-Hep1 cells with characteristic features of apoptosis such as DNA fragmentation, sub-G1 ploidy peak, and cytochrome c translocation. In contrast with parental cells, mitochondrial DNA-deficient SK-Hep1 rho(0) cells were resistant to TRAIL-induced apoptosis. Dissipation of mitochondrial potential or cytochrome c translocation did not occur in rho(0) cells after TRAIL treatment. Bax translocation also was absent in rho(0) cells, accounting for the failure of cytochrome c release in rho(0) cells. SK-Hep1 rho(0) cells were resistant to other death effectors such as staurosporine. Our results indicate that apoptosis of SK-Hep1 hepatoma cells is dependent on intact mitochondrial function. Because aged cells or tumor cells have frequent mutations or deletions of mitochondrial DNA, they might acquire the ability to evade apoptosis or tumor surveillance imposed by TRAIL or other death effectors in vivo, accounting for the selection advantage of cancer cells and frequent development of cancer in aged individuals.
Insights
Mitochondrial function is essential for apoptosis induction by TRAIL and other death signals in SK-Hep1 hepatoma cells. Loss of mitochondrial DNA renders cells resistant to apoptosis, suggesting a role in cancer evasion.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Mitochondria play critical roles in apoptosis and necrosis.
- Previous studies suggested mitochondrial function might be dispensable for apoptosis.
- Tumor cells and aged cells often exhibit mitochondrial DNA mutations.
Purpose of the Study:
- To investigate the role of intact mitochondrial function in apoptosis.
- To determine if mitochondrial DNA deficiency affects apoptosis sensitivity.
- To explore the implications for cancer cell evasion of apoptosis.
Main Methods:
- Utilized SK-Hep1 hepatoma cells and their mitochondrial DNA-deficient rho(0) counterparts.
- Induced apoptosis using Tumor Necrosis Factor-Related Apoptosis-Inducing Ligand (TRAIL) and staurosporine.
- Assessed apoptosis hallmarks: DNA fragmentation, cell cycle analysis, cytochrome c release, and Bax translocation.
Main Results:
- SK-Hep1 cells underwent TRAIL-induced apoptosis with characteristic features.
- Mitochondrial DNA-deficient SK-Hep1 rho(0) cells were resistant to TRAIL-induced apoptosis.
- TRAIL treatment failed to induce mitochondrial potential dissipation, cytochrome c release, or Bax translocation in rho(0) cells.
Conclusions:
- Apoptosis in SK-Hep1 hepatoma cells is dependent on intact mitochondrial function.
- Mitochondrial DNA mutations may confer resistance to apoptosis, aiding cancer cell survival.
- This mechanism could explain cancer cell selection advantage and cancer development in aged individuals.
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