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Updated: Nov 9, 2025

Defining Gene Functions in Tumorigenesis by Ex vivo Ablation of Floxed Alleles in Malignant Peripheral Nerve Sheath Tumor Cells
Published on: August 25, 2021
Genetic deletion of Nox4 enhances cancerogen-induced formation of solid tumors
Valeska Helfinger1, Florian Freiherr von Gall1, Nina Henke2
1Institute for Cardiovascular Physiology, Goethe University, 60590 Frankfurt am Main, Germany.
Abstract:
Reactive oxygen species (ROS) can cause cellular damage and promote cancer development. Besides such harmful consequences of overproduction of ROS, all cells utilize ROS for signaling purposes and stabilization of cell homeostasis. In particular, the latter is supported by the NADPH oxidase 4 (Nox4) that constitutively produces low amounts of H2O2 By that mechanism, Nox4 forces differentiation of cells and prevents inflammation. We hypothesize a constitutive low level of H2O2 maintains basal activity of cellular surveillance systems and is unlikely to be cancerogenic. Utilizing two different murine models of cancerogen-induced solid tumors, we found that deletion of Nox4 promotes tumor formation and lowers recognition of DNA damage. Nox4 supports phosphorylation of H2AX (γH2AX), a prerequisite of DNA damage recognition, by retaining a sufficiently low abundance of the phosphatase PP2A in the nucleus. The underlying mechanism is continuous oxidation of AKT by Nox4. Interaction of oxidized AKT and PP2A captures the phosphatase in the cytosol. Absence of Nox4 facilitates nuclear PP2A translocation and dephosphorylation of γH2AX. Simultaneously AKT is left phosphorylated. Thus, in the absence of Nox4, DNA damage is not recognized and the increased activity of AKT supports proliferation. The combination of both events results in genomic instability and promotes tumor formation. By identifying Nox4 as a protective source of ROS in cancerogen-induced cancer, we provide a piece of knowledge for understanding the role of moderate production of ROS in preventing the initiation of malignancies.
Insights
NADPH oxidase 4 (Nox4) produces hydrogen peroxide (H2O2) to prevent cancer. Deleting Nox4 impairs DNA damage recognition and promotes tumor formation, highlighting ROS's protective role in cancer prevention.
Area of Science:
- Biochemistry
- Cell Biology
- Oncology
Background:
- Reactive oxygen species (ROS) have dual roles, causing damage but also essential for cellular signaling and homeostasis.
- NADPH oxidase 4 (Nox4) constitutively produces low levels of hydrogen peroxide (H2O2), crucial for cell differentiation and inflammation control.
Purpose of the Study:
- To investigate the role of Nox4-derived H2O2 in preventing cancer initiation.
- To elucidate the molecular mechanisms by which Nox4 influences DNA damage recognition and cell proliferation.
Main Methods:
- Utilized two murine models of carcinogen-induced solid tumors.
- Analyzed the impact of Nox4 deletion on tumor formation and DNA damage response pathways.
- Investigated the interaction between Nox4, AKT, and protein phosphatase 2A (PP2A) in regulating DNA damage signaling.
Main Results:
- Deletion of Nox4 promoted tumor formation and reduced DNA damage recognition in murine models.
- Nox4 deficiency led to decreased phosphorylation of H2AX (γH2AX) due to increased nuclear PP2A activity.
- Nox4-mediated oxidation of AKT prevents its interaction with PP2A, retaining PP2A in the cytosol and allowing γH2AX dephosphorylation.
Conclusions:
- Constitutive low-level H2O2 production by Nox4 is essential for maintaining cellular surveillance and preventing cancer initiation.
- Nox4 acts as a tumor suppressor by ensuring proper DNA damage recognition and limiting proliferation through AKT and PP2A regulation.
- Understanding Nox4's protective role offers insights into preventing malignancies through ROS modulation.
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