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SA-β-Galactosidase-Based Screening Assay for the Identification of Senotherapeutic Drugs
Published on: June 28, 2019
Cystathionase mediates senescence evasion in melanocytes and melanoma cells
C Leikam1, A Hufnagel1, S Walz2
1Department of Physiological Chemistry I, Biocenter, University of Wurzburg, Wurzburg, Germany.
Abstract:
The development of malignant melanoma is a highly complex process, which is still poorly understood. A majority of human melanomas are found to express a few oncogenic proteins, such as mutant RAS and BRAF variants. However, these oncogenes are also found in nevi, and it is now a well-accepted fact that their expression alone leads to senescence. This renders the understanding of senescence escape mechanisms an important point to understand tumor development. Here, we approached the question of senescence evasion by expressing the transcription factor v-myc myelocytomatosis viral oncogene homolog (c-MYC), which is known to act synergistically with many oncogenes, in melanocytes. We observed that MYC drives the evasion of reactive-oxygen stress-induced melanocyte senescence, caused by activated receptor tyrosine kinase signaling. Conversely, MIZ1, the growth suppressing interaction partner of MYC, is involved in mediating melanocyte senescence. Both, MYC overexpression and Miz1 knockdown led to a strong reduction of endogenous reactive-oxygen species (ROS), DNA damage and senescence. We identified the cystathionase (CTH) gene product as mediator of the ROS-related MYC and MIZ1 effects. Blocking CTH enzymatic activity in MYC-overexpressing and Miz1 knockdown cells increased intracellular stress and senescence. Importantly, pharmacological inhibition of CTH in human melanoma cells also reconstituted senescence in the majority of cell lines, and CTH knockdown reduced tumorigenic effects such as proliferation, H2O2 resistance and soft agar growth. Thus, we identified CTH as new MYC target gene with an important function in senescence evasion.
Insights
The transcription factor c-MYC helps evade melanoma cell senescence by reducing reactive oxygen species (ROS). Cystathionase (CTH) mediates this effect, and its inhibition restores senescence and reduces tumor growth.
Area of Science:
- Oncology
- Molecular Biology
- Cellular Senescence
Background:
- Malignant melanoma development is complex and poorly understood.
- Oncogenes like RAS and BRAF are present in melanomas and nevi but induce senescence, not tumors, alone.
- Understanding senescence evasion is crucial for comprehending melanoma development.
Purpose of the Study:
- To investigate the role of c-MYC in overcoming melanocyte senescence.
- To elucidate the mechanisms by which MYC influences senescence evasion.
- To identify novel therapeutic targets for melanoma.
Main Methods:
- Overexpression of c-MYC in melanocytes.
- Knockdown of MIZ1, a MYC interaction partner.
- Measurement of reactive oxygen species (ROS), DNA damage, and senescence markers.
- Assessment of cystathionase (CTH) activity and expression.
- Pharmacological inhibition and knockdown of CTH in melanoma cells.
- Evaluation of tumorigenic properties including proliferation, H2O2 resistance, and soft agar growth.
Main Results:
- c-MYC expression promoted evasion of ROS-induced melanocyte senescence.
- MIZ1 mediated melanocyte senescence, and its knockdown reduced ROS, DNA damage, and senescence.
- Both MYC overexpression and Miz1 knockdown decreased endogenous ROS.
- CTH was identified as a mediator of MYC and MIZ1 effects on ROS and senescence.
- CTH inhibition or knockdown in melanoma cells reconstituted senescence and reduced tumorigenic potential.
Conclusions:
- c-MYC drives senescence evasion in melanocytes.
- CTH is a novel MYC target gene that plays a critical role in melanoma cell senescence evasion.
- CTH is a potential therapeutic target for melanoma treatment.
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