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Published on: April 24, 2021
noxin, a novel stress-induced gene involved in cell cycle and apoptosis
Naoki Nakaya1, Jill Hemish, Peter Krasnov
1Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, NY 11724, USA.
Abstract:
We describe a novel stress-induced gene, noxin, and a knockout mouse line with an inactivated noxin gene. The noxin gene does not have sequelogs in the genome and encodes a highly serine-rich protein with predicted phosphorylation sites for ATM, Akt, and DNA-dependent protein kinase kinases; nuclear localization signals; and a Zn finger domain. noxin mRNA and protein levels are under tight control by the cell cycle. noxin, identified as a nitric oxide-inducible gene, is strongly induced by a wide range of stress signals: gamma- and UV irradiation, hydrogen peroxide, adriamycin, and cytokines. This induction is dependent on p53. Noxin accumulates in the nucleus in response to stress and, when ectopically expressed, Noxin arrests the cell cycle at G1; although it also induces p53, the cell cycle arrest function of Noxin is independent of p53 activity. noxin knockout mice are viable and fertile; however, they have an enlarged heart, several altered hematopoietic parameters, and a decreased number of spermatids. Importantly, loss or downregulation of Noxin leads to increased cell death. Our results suggest that Noxin may be a component of the cell defense system: it is activated by various stress stimuli, helps cells to withdraw from cycling, and opposes apoptosis.
Insights
We discovered noxin, a novel gene activated by cellular stress. Noxin helps cells halt division and avoid death, acting as a key part of the cell defense system.
Area of Science:
- Molecular Biology
- Genetics
- Cell Biology
Background:
- The cellular response to stress involves intricate genetic regulation.
- Identifying novel genes involved in stress response pathways is crucial for understanding cell defense mechanisms.
Purpose of the Study:
- To characterize a newly identified stress-induced gene, noxin, and its role in cellular processes.
- To investigate the function of noxin using a knockout mouse model.
Main Methods:
- Gene identification and characterization of noxin.
- Generation and analysis of noxin knockout mice.
- Cell cycle analysis and stress induction assays.
Main Results:
- Noxin is a novel, serine-rich protein induced by various stress signals (irradiation, oxidative stress, cytokines) in a p53-dependent manner.
- Ectopic expression of Noxin induces G1 cell cycle arrest, independent of p53.
- Noxin knockout mice exhibit cardiac and hematopoietic alterations, reduced spermatids, and increased cell death upon stress.
- Noxin accumulates in the nucleus under stress and opposes apoptosis.
Conclusions:
- Noxin is a critical component of the cellular defense system, activated by stress.
- Noxin plays a role in cell cycle regulation and apoptosis resistance.
- Loss of Noxin function compromises cellular defense, leading to increased cell death.
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