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.

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.

Related Concept Videos

Mutagenicity and Carcinogenicity01:25

Mutagenicity and Carcinogenicity

Mutagenicity and carcinogenicity refer to the ability of drugs to cause genetic defects and induce cancer, respectively. The International Agency for Research on Cancer (IARC) classifies agents into four groups based on their carcinogenic potential. Group 1 agents are known human carcinogens; group 2A agents are probably carcinogenic to humans; group 3 agents lack data to support their role in carcinogenesis; and group 4 includes agents for which data support that they are not likely to be...
1.6K
Loss of Tumor Suppressor Gene Functions01:12

Loss of Tumor Suppressor Gene Functions

Tumor suppressor genes are normal genes that can slow down cell division, repair DNA mistakes, or program the cells for apoptosis in case of irreparable damage. Hence, they play an essential role in preventing the proliferation of damaged cells.
When the tumor suppressor genes develop mutations or are lost, cells start growing out of control, leading to cancer. However, a single functional copy of the tumor suppressor gene is enough for the cells to maintain their normal functions and cell...
5.4K
Cancer-Critical Genes I: Proto-oncogenes01:33

Cancer-Critical Genes I: Proto-oncogenes

Genes usually encode proteins necessary for the proper functioning of a healthy cell. Mutations can often cause changes to the gene expression pattern, thereby altering the phenotype.
When the function of certain critical genes, especially those involved in cell cycle regulation and cell growth signaling cascades, gets disrupted, it upsets the cell cycle progression. Such cells with unchecked cell cycles start proliferating uncontrollably and eventually develop into tumors.
Such genes that act...
9.6K
Induced Pluripotent Stem Cells01:06

Induced Pluripotent Stem Cells

Stem cells are undifferentiated cells that divide and produce different cell types. Ordinarily, cells that have differentiated into a specific cell type are terminally differentiated; however, scientists have found a way to reprogram these mature cells so that they dedifferentiate and return to an unspecialized, proliferative state. These cells are pluripotent like embryonic stem cells—able to produce all cell types—and are called induced pluripotent stem cells (iPSCs).
Somatic...
4.8K
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...
4.8K
Cancers Originate from Somatic Mutations in a Single Cell02:21

Cancers Originate from Somatic Mutations in a Single Cell

Cancer arises from mutations in the critical genes that allow healthy cells to escape cell cycle regulation and acquire the ability to proliferate indefinitely. Though originating from a single mutation event in one of the originator cells, cancer progresses when the mutant cell lines continue to gain more and more mutations, and finally, become malignant. For example, chronic myelogenous leukemia (CML) develops initially as a non-lethal increase in white blood cells, which progressively...
13.4K