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Updated: Dec 12, 2025

Detection of Mitochondria Membrane Potential to Study CLIC4 Knockdown-induced HN4 Cell Apoptosis In Vitro
Published on: July 17, 2018
Crosstalk between Noxa, Bcl-2, and ceramide in mediating p53-dependent apoptosis in Molt-4 human T-cell leukemia
Hadile Kobeissy1, Rouba Hage-Sleiman2, Zeinab Dakdouk1
1Department of Biochemistry and Molecular Genetics, Faculty of Medicine, American University of Beirut, Beirut, Lebanon.
Abstract:
Ionizing radiation induces apoptosis in human Molt-4 leukemia cells in a p53-dependent manner. The tumor suppressor p53 stimulates various downstream targets that presumably trigger, individually or in concert, de novo ceramide synthesis and intrinsic apoptosis via mitochondrial outer membrane permeabilization (MOMP). Among these targets, BH3-only protein Noxa was found to be promptly activated by p53 prior to ceramide accumulation and apoptosis in response to irradiation. To evaluate the relation between Noxa and ceramide in irradiation-induced apoptosis, Noxa was silenced in Molt-4 cells and apoptosis, p53 expression, and ceramide accumulation were assessed in response to irradiation. In the absence of Noxa, irradiation of Molt-4 cells still induced apoptosis in a p53-dependent manner however ceramide levels decreased significantly although they remained higher than untreated control. Upon irradiation, Noxa was found to translocate to the mitochondria where endogenous ceramide accumulation was observed. In contrast, overexpression of Bcl-2, another mitochondrial protein, in Molt-4 cells abolished the endogenous ceramide accumulation and apoptosis. In irradiation-induced, p53-dependent pathways of apoptosis, the pro-apoptotic Noxa represents one of several, yet to be identified, pathways simultaneously triggered by p53 to produce mitochondrial ceramide accumulation and apoptosis. In contrast, Bcl-2 functions as a broader inhibitor of both ceramide accumulation and apoptosis. Altogether, these results indicate that members of the Bcl-2 family differentially regulate ceramide accumulation and reveal the existence of crosstalk between Bcl-2 family members and ceramide in mediating p53-dependent apoptosis in Molt-4 human T-cell leukemia.
Insights
Ionizing radiation triggers apoptosis in leukemia cells via p53. While Noxa protein is involved, ceramide accumulation and apoptosis still occur without it, indicating complex p53-dependent pathways.
Area of Science:
- Cellular and Molecular Biology
- Cancer Research
- Biochemistry
Background:
- Ionizing radiation (IR) induces apoptosis in human Molt-4 leukemia cells, a process dependent on the tumor suppressor p53.
- p53 activates downstream targets, leading to ceramide synthesis and apoptosis via mitochondrial outer membrane permeabilization (MOMP).
- The BH3-only protein Noxa is rapidly activated by p53 following irradiation, preceding ceramide accumulation and apoptosis.
Purpose of the Study:
- To investigate the relationship between Noxa and ceramide in IR-induced apoptosis.
- To assess the impact of Noxa silencing on apoptosis, p53 expression, and ceramide accumulation in Molt-4 cells after irradiation.
Main Methods:
- Silencing of Noxa in Molt-4 cells.
- Assessment of apoptosis, p53 expression, and ceramide accumulation in response to irradiation.
- Mitochondrial translocation studies of Noxa.
- Overexpression of Bcl-2 to assess its role.
Main Results:
- IR-induced apoptosis in Molt-4 cells remained p53-dependent even without Noxa, but ceramide levels were significantly reduced.
- Noxa translocated to mitochondria upon irradiation, coinciding with ceramide accumulation.
- Overexpression of Bcl-2 inhibited both ceramide accumulation and apoptosis.
Conclusions:
- Noxa is one of several p53-triggered pathways contributing to mitochondrial ceramide accumulation and apoptosis.
- Bcl-2 acts as a broader inhibitor of ceramide accumulation and apoptosis.
- Bcl-2 family members differentially regulate ceramide accumulation, revealing crosstalk with ceramide in p53-dependent apoptosis.
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