Cisplatin causes cell death via TAB1 regulation of p53/MDM2/MDMX circuitry

Yan Zhu1, Kausik Regunath, Xavier Jacq

  • 1Department of Biological Sciences, Columbia University, New York, New York 10027, USA.

Genes & Development
|August 13, 2013
PubMed

Insights

Transforming growth factor β-activated kinase 1-binding protein 1 (TAB1) inhibits MDM2

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Cancer Research

Background:

  • The p53-MDM2 interaction is crucial for cell fate, with alterations linked to cancer.
  • Mitogen-activated protein kinase (MAPK) pathways regulate vital cellular processes.

Purpose of the Study:

  • To investigate the role of TAB1 in regulating p53, MDM2, and MAPK signaling.
  • To explore TAB1's function in cellular responses to DNA-damaging agents, particularly cisplatin.

Main Methods:

  • Investigated TAB1's association with MDM2 and its effect on MDM2's E3 ligase activity towards p53 and MDMX.
  • Utilized siRNA to deplete TAB1 and assessed its impact on p53 accumulation, p21 induction, and cell cycle arrest.
  • Examined TAB1's role in cisplatin-induced apoptosis, including p38α activation and p53/MDMX phosphorylation/stabilization.
  • Compared TAB1 levels in cisplatin-resistant ovarian cells and patient tumors versus normal tissue.

Main Results:

  • TAB1 directly inhibits MDM2's ligase activity toward p53 and MDMX.
  • TAB1 depletion partially rescues cell cycle arrest caused by MDM2 inhibition.
  • TAB1 regulates cisplatin-induced apoptosis via p38α-mediated p53 phosphorylation and MDMX stabilization.
  • Lower TAB1 levels correlate with cisplatin resistance in ovarian cancer cells and tumors.

Conclusions:

  • TAB1 acts as a tumor suppressor by linking p53-MDM2 regulation with MAPK signaling.
  • TAB1 is a key mediator of apoptosis in response to cisplatin treatment.
  • TAB1 represents a potential therapeutic target in ovarian cancer.

Related Concept Videos

DNA Damage can Stall the Cell Cycle02:36

DNA Damage can Stall the Cell Cycle

In response to DNA damage, cells can pause the cell cycle to assess and repair the breaks. However, the cell must check the DNA at certain critical stages during the cell cycle. If the cell cycle pauses before DNA replication, the cells will contain twice the amount of DNA. On the other hand, if cells arrest after DNA replication but before mitosis, they will contain four times the normal amount of DNA. With a host of specialized proteins at their disposal,cells must use the right protein at...
DNA Damage Can Stall the Cell Cycle02:36

DNA Damage Can Stall the Cell Cycle

In response to DNA damage, cells can pause the cell cycle to assess and repair the breaks. However, the cell must check the DNA at certain critical stages during the cell cycle. If the cell cycle pauses before DNA replication, the cells will contain twice the amount of DNA. On the other hand, if cells arrest after DNA replication but before mitosis, they will contain four times the normal amount of DNA. With a host of specialized proteins at their disposal,cells must use the right protein at...
Abnormal Proliferation02:23

Abnormal Proliferation

Under normal conditions, most adult cells remain in a non-proliferative state unless stimulated by internal or external factors to replace lost cells. Abnormal cell proliferation is a condition in which the cell's growth exceeds and is uncoordinated with normal cells. In such situations, cell division persists in the same excessive manner even after cessation of the stimuli, leading to persistent tumors. The tumor arises from the damaged cells that replicate to pass the damage to the daughter...
The Intrinsic Apoptotic Pathway01:31

The Intrinsic Apoptotic Pathway

Internal cellular stress, such as cellular injury or hypoxia, triggers intrinsic apoptosis. The B-cell lymphoma 2 (Bcl-2) family of proteins are the primary regulators of the intrinsic apoptotic pathway. For example, during DNA damage, checkpoint proteins, such as Ataxia Telangiectasia Mutated (ATM protein) and Checkpoints Factor-2 (Chk2) proteins, are activated. These proteins phosphorylate p53 which further activates pro-apoptotic proteins, such as Bax, Bak, PUMA, and Noxa, and inhibits...
Negative Regulator Molecules01:23

Negative Regulator Molecules

Positive regulators allow a cell to advance through cell cycle checkpoints. Negative regulators have an equally important role as they terminate a cell’s progression through the cell cycle—or pause it—until the cell meets specific criteria.
Inhibition of Cdk Activity02:34

Inhibition of Cdk Activity

The orderly progression of the cell cycle depends on the activation of Cdk protein by binding to its cyclin partner. However, the cell cycle must be restricted when undergoing abnormal changes. Most cancers correlate to the deregulated cell cycle, and since Cdks are a central component of the cell cycle, Cdk inhibitors are extensively studied to develop anticancer agents. For instance, cyclin D associates with several Cdks, such as Cdk 4/6, to form an active complex. The cyclin D-Cdk4/6 complex...