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Published on: January 7, 2019
DUOX1 in mammalian disease pathophysiology
Nuha Milad Ashtiwi1, Demba Sarr1, Balázs Rada2
1Department of Infectious Diseases, College of Veterinary Medicine, University of Georgia, Athens, GA, USA.
Abstract:
Dual oxidase 1 (DUOX1) is a member of the protein family of nicotinamide adenine dinucleotide phosphate (NADPH) oxidases. DUOX1 has several normal physiological, immunological, and biochemical functions in different parts of the body. Dysregulated oxidative metabolism interferes with various disease pathologies and numerous therapeutic options are based on targeting cellular redox pathways. DUOX1 forms an important enzymatic source of biological oxidants, and DUOX1 expression is frequently dysregulated in various diseases. While this review shortly addresses the biochemical and cellular properties and proposed physiological roles of DUOX1, its main purpose is to summarize the current knowledge with respect to the potential role of DUOX1 enzyme in disease pathology, especially in mammalian organisms. Although DUOX1 is normally prominently expressed in epithelial lineages, it is frequently silenced in epithelial-derived cancers by epigenetic mechanisms. While an abundance of information is available on DUOX1 transcription in different diseases, an increasing number of mechanistic studies indicate a causative relationship between DUOX1 function and disease pathophysiology. Additionally, specific functions of the DUOX1 maturation factor, DUOXA1, will also be addressed. Lastly, urgent and outstanding questions on the field of DUOX1 will be discussed that could provide valuable new diagnostic tools and novel therapeutic options.
Insights
Dual Oxidase 1 (DUOX1) is crucial for normal functions but its dysregulation links to diseases. Understanding DUOX1's role offers new diagnostic and therapeutic strategies for various pathologies.
Area of Science:
- Biochemistry
- Molecular Biology
- Cellular Physiology
Background:
- Dual Oxidase 1 (DUOX1) is an NADPH oxidase enzyme with vital physiological roles.
- Oxidative metabolism dysregulation is implicated in numerous disease pathologies.
- DUOX1 is a key source of biological oxidants, with altered expression in various diseases.
Purpose of the Study:
- To review the biochemical and cellular properties of DUOX1.
- To summarize DUOX1's role in mammalian disease pathology.
- To discuss DUOXA1's function and future research directions.
Main Methods:
- Literature review of DUOX1 expression and function.
- Analysis of DUOX1's involvement in disease mechanisms.
- Examination of epigenetic silencing in cancers.
Main Results:
- DUOX1 is typically expressed in epithelial cells but silenced in cancers.
- Mechanistic studies suggest a causative link between DUOX1 function and disease.
- DUOXA1 plays a role in DUOX1 maturation.
Conclusions:
- DUOX1 dysregulation is significant in disease pathophysiology.
- Targeting DUOX1 pathways presents therapeutic opportunities.
- Further research on DUOX1 could yield novel diagnostic and therapeutic tools.
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