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Published on: August 25, 2021
TG2 protects neuroblastoma cells against DNA-damage-induced stress, suppresses p53 activation
1Department of Psychiatry and Behavioral Neurobiology, University of Alabama at Birmingham, 1720, 7th Ave. South, SC 981, Birmingham, AL 35294-0017, USA. jtuchol@uab.edu
Abstract:
Tissue transglutaminase (TG2) is a multifunctional member of the transglutaminase (TGase) family (E.C.2.3.2.13), which catalyzes in a calcium-dependent reaction the formation of covalent bonds between the gamma-carboxamide groups of peptide-bound glutamine residues and various primary amines. Here, we investigated the role of TG2 in a response of the neuroblastoma SH-SY5Y cells to topoisomerase II inhibitor etoposide, known to trigger DNA-damage cell response. We found an early and transient (approximately 2 h) increase of the TG2 protein in SH-SY5Y cells treated with etoposide, along with the increase of phosphorylated and total levels of the p53 protein. Next, we showed that SH-SY5Y cells, which overexpress wild-type TG2 were significantly protected against etoposide-induced cell death. The TG2 protective effect was associated only with the transamidation active form of TG2, because overexpression the wild-type TG2, but not its transamidation inactive C277S form, resulted in a pronounced suppression of caspase-3 activity as well as p53 phosphorylation during the etoposide-induced stress. In addition, exacerbation of cell death with a significant increase in caspase-3 and p53 activation was observed in SH/anti-TG2 cells, in which expression of the endogenous TG2 protein has been greatly reduced by the antisense cDNA construct. Though the cell signaling and molecular mechanisms of the TG2-driven suppression of the cell death machinery remain to be investigated, our findings strongly suggest that TG2 plays an active role in the response of neuroblastoma cells to DNA-damage-induced stress by exerting a strong protective effect, likely by the suppression of p53 activation and p53-driven cell signaling events.
Insights
Tissue transglutaminase (TG2) protects neuroblastoma cells from etoposide-induced DNA damage. Active TG2 suppresses cell death by reducing p53 activation and caspase-3 activity, highlighting its role in cellular stress response.
Area of Science:
- Biochemistry
- Cell Biology
- Neuroscience
Background:
- Tissue transglutaminase (TG2) is a calcium-dependent enzyme catalyzing cross-linking reactions.
- Neuroblastoma cells (SH-SY5Y) are susceptible to DNA-damage induced by topoisomerase II inhibitors like etoposide.
- p53 protein is a key regulator of DNA damage response and apoptosis.
Purpose of the Study:
- To investigate the role of TG2 in the response of neuroblastoma SH-SY5Y cells to etoposide-induced DNA damage.
- To determine if TG2 expression influences cell survival under genotoxic stress.
- To elucidate the involvement of TG2's enzymatic activity in modulating cell death pathways.
Main Methods:
- SH-SY5Y cells were treated with etoposide.
- TG2 and p53 protein levels and phosphorylation were analyzed.
- Overexpression of wild-type and mutant TG2 (C277S) was performed.
- Antisense cDNA was used to reduce endogenous TG2 expression.
- Caspase-3 activity was measured.
Main Results:
- Etoposide treatment increased TG2 and p53 protein levels in SH-SY5Y cells.
- Overexpression of wild-type TG2 protected cells from etoposide-induced death.
- The protective effect of TG2 was dependent on its transamidation activity.
- Reduced TG2 expression exacerbated etoposide-induced cell death, caspase-3, and p53 activation.
Conclusions:
- TG2 plays a significant protective role in neuroblastoma cells subjected to DNA-damage stress.
- Active TG2 suppresses etoposide-induced cell death, likely by inhibiting p53 activation and downstream signaling.
- TG2 represents a potential therapeutic target for enhancing neuroblastoma cell survival during genotoxic treatments.
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