Related Experiment Video
Updated: Apr 5, 2026

Methods for Evaluating the Role of c-Fos and Dusp1 in Oncogene Dependence
Published on: January 7, 2019
NSC-87877 inhibits DUSP26 function in neuroblastoma resulting in p53-mediated apoptosis
1Division of Pediatric Surgery, Texas Children's Hospital Department of Surgery, Michael E. DeBakey Department of Surgery, Dan L. Duncan Cancer Center, Baylor College of Medicine, Clinical Care Center, Houston, TX, USA.
Abstract:
Dual specificity protein phosphatase 26 (DUSP26) is overexpressed in high-risk neuroblastoma (NB) and contributes to chemoresistance by inhibiting p53 function. In vitro, DUSP26 has also been shown to effectively inhibit p38 MAP kinase. We hypothesize that inhibiting DUSP26 will result in decreased NB cell growth in a p53 and/or p38-mediated manner. NSC-87877 (8-hydroxy-7-[(6-sulfo-2-naphthyl)azo]-5-quinolinesulfonic acid), a novel DUSP26 small molecule inhibitor, shows effective growth inhibition and induction of apoptosis in NB cell lines. NB cell lines treated with small hairpin RNA (shRNA) targeting DUSP26 also exhibit a proliferation defect both in vitro and in vivo. Treatment of NB cell lines with NSC-87877 results in increased p53 phosphorylation (Ser37 and Ser46) and activation, increased activation of downstream p38 effector proteins (heat shock protein 27 (HSP27) and MAP kinase-activated protein kinase 2 (MAPKAPK2)) and poly ADP ribose polymerase/caspase-3 cleavage. The cytotoxicity resulting from DUSP26 inhibition is partially reversed by knocking down p53 expression with shRNA and also by inhibiting p38 activity with SB203580 (4-[4-(4-fluorophenyl)-2-(4-methylsulfinylphenyl)-1H-imidazol-5-yl]pyridine). In an intrarenal mouse model of NB, NSC-87877 treatment results in decreased tumor growth and increased p53 and p38 activity. Together, these results suggest that DUSP26 inhibition with NSC-87877 is an effective strategy to induce NB cell cytotoxicity in vitro and in vivo through activation of the p53 and p38 mitogen-activated protein kinase (MAPK) tumor-suppressor pathways.
Insights
Dual specificity protein phosphatase 26 (DUSP26) inhibition reduces neuroblastoma growth by activating p53 and p38 pathways. This DUSP26 targeting strategy shows promise for treating high-risk neuroblastoma (NB).
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Dual specificity protein phosphatase 26 (DUSP26) is overexpressed in high-risk neuroblastoma (NB) and promotes chemoresistance by inhibiting p53.
- DUSP26 also inhibits p38 MAP kinase activity, a pathway involved in cellular stress responses.
Purpose of the Study:
- To investigate the therapeutic potential of inhibiting DUSP26 in neuroblastoma.
- To determine if DUSP26 inhibition affects NB cell growth via p53 and/or p38 signaling pathways.
Main Methods:
- Utilized NSC-87877, a small molecule inhibitor of DUSP26, and shRNA to target DUSP26 in NB cell lines.
- Assessed cell growth, apoptosis, protein phosphorylation, and activation of downstream effectors.
- Evaluated the efficacy of NSC-87877 in an in vivo intrarenal mouse model of NB.
Main Results:
- NSC-87877 and DUSP26 shRNA treatment inhibited NB cell proliferation in vitro and in vivo.
- DUSP26 inhibition led to increased p53 phosphorylation and activation, and enhanced p38 pathway signaling.
- Cytotoxicity was partially reversed by p53 knockdown or p38 pathway inhibition.
- NSC-87877 treatment reduced tumor growth and increased p53/p38 activity in a mouse model.
Conclusions:
- DUSP26 inhibition with NSC-87877 is a viable strategy for inducing neuroblastoma cell cytotoxicity.
- The anti-NB effects are mediated through the activation of the p53 and p38 MAPK tumor-suppressor pathways.
- Targeting DUSP26 offers a promising therapeutic approach for high-risk neuroblastoma.
More Related Videos
07:43An Enzyme- and Serum-free Neural Stem Cell Culture Model for EMT Investigation Suited for Drug Discovery
Published on: August 23, 2016
09:37Defining Gene Functions in Tumorigenesis by Ex vivo Ablation of Floxed Alleles in Malignant Peripheral Nerve Sheath Tumor Cells
Published on: August 25, 2021
Related Concept Videos
Abnormal Proliferation
Inhibition of Cdk Activity
Negative Regulator Molecules
DNA Damage can Stall the Cell Cycle
DNA Damage Can Stall the Cell Cycle
The Intrinsic Apoptotic Pathway