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Dong-Hoon Hyun

Ewha Womans University · Medicine

About the Lab

Professor Dong-Hoon Hyun's research lab focuses on the molecular mechanisms underlying neurodegenerative diseases, with a central emphasis on oxidative stress, protein homeostasis, and iron metabolism in neuronal cell death. The lab investigates the roles of redox systems, ubiquitin-proteasome function, and metal ion homeostasis—particularly iron and copper—in conditions such as Parkinson’s disease, Alzheimer’s disease, and amyotrophic lateral sclerosis (ALS). Using in vitro neuronal cell models, the lab explores how genetic mutations (e.g., in alpha-synuclein, Parkin, SOD-1) and metabolic interventions (e.g., caloric restriction) influence cellular resilience, oxidative damage, and proteostasis. The ultimate goal is to identify therapeutic targets that enhance neuronal survival in aging and neurodegeneration.

neurodegenerationoxidative stressproteostasisiron homeostasisubiquitin-proteasome system

Research Overview

Papers
56
Total Citations
3,491
Papers (5y)
5
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
5total
2021
2022
2023
2024
2026
Citations per year (5y)
149total
20212022202320242026

Selected Papers

15
1
Article|601 citations·2006
Alternate day calorie restriction improves clinical findings and reduces markers of oxidative stress and inflammation in overweight adults with moderate asthma
James B. Johnson, Warren R. Summer, Roy G. Cutler, Bronwen Martin, Dong‐Hoon Hyun, Vishwa Deep Dixit, Michelle Pearson, Matthew R. Nassar, Richard Tellejohan, Stuart Maudsley, Olga D. Carlson, Sujit John
SJR Q1Free Radical Biology and MedicineOA
PhysiologyMedicine
2
Article|266 citations·2006
Calorie restriction up-regulates the plasma membrane redox system in brain cells and suppresses oxidative stress during aging
Dong‐Hoon Hyun, Scott S. Emerson, Dong‐Gyu Jo, Mark P. Mattson, Rafael de Cabo
SJR Q1Proceedings of the National Academy of SciencesOA

The plasma membrane (PM) contains redox enzymes that provide electrons for energy metabolism and recycling of antioxidants such as coenzyme Q and alpha-tocopherol. Brain aging and neurodegenerative disorders involve impaired energy metabolism and oxidative damage, but the involvement of the PM redox system (PMRS) in these processes is unknown. Caloric restriction (CR), a manipulation that protects the brain against aging and disease, increased activities of PMRS enzymes (NADH-ascorbate free radi

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|232 citations·2001
Effect of the overexpression of wild‐type or mutant α‐synuclein on cell susceptibility to insult
MoonHee Lee, Dong‐Hoon Hyun, Barry Halliwell, Peter Jenner
SJR Q1Journal of NeurochemistryOA

Mutations in alpha-synuclein (A30P and A53T) are involved in some cases of familial Parkinson's disease (FPD), but it is not known how they result in nigral cell death. We examined the effect of alpha-synuclein overexpression on the response of cells to various insults. Wild-type alpha-synuclein and alpha-synuclein mutations associated with FPD were overexpressed in NT-2/D1 and SK-N-MC cells. Overexpression of wild-type alpha-synuclein delayed cell death induced by serum withdrawal or H(2)O(2),

NeurologyMedicine
4
Article|174 citations·2002
Effect of Wild-type or Mutant Parkin on Oxidative Damage, Nitric Oxide, Antioxidant Defenses, and the Proteasome
Dong‐Hoon Hyun, MoonHee Lee, Nobutaka Hattori, Shin-ichiro Kubo, Yoshikuni Mizuno, Barry Halliwell, Peter Jenner
SJR Q1Journal of Biological ChemistryOA

Mutations in Parkin (a ubiquitin protein ligase) are involved in autosomal recessive juvenile parkinsonism, but it is not known how they cause nigral cell death. We examined the effect of Parkin overexpression on cellular levels of oxidative damage, antioxidant defenses, nitric oxide production, and proteasomal enzyme activity. Increasing expression of Parkin by gene transfection in NT-2 and SK-N-MC cells led to increased proteasomal activity, decreased levels of protein carbonyls, 3-nitrotyrosi

NeurologyMedicine
5
Article|145 citations·2003
Proteasomal inhibition causes the formation of protein aggregates containing a wide range of proteins, including nitrated proteins
Dong‐Hoon Hyun, MoonHee Lee, Barry Halliwell, Peter Jenner
SJR Q1Journal of Neurochemistry

Mutations in Cu,Zn-superoxide dismutase (SOD-1) are associated with some familial cases of amyotrophic lateral sclerosis (ALS), but it is not known how they result in cell death. We examined effects of overexpression of wild-type SOD-1 or the G37R or G85R mutations on the accumulation of ubiquitinated and nitrated proteins, and on loss of cell viability induced by the proteasome inhibitor, lactacystin. Wild-type SOD-1 had no effect on proteasomal activity, but the mutants decreased it somewhat.

NeurologyMedicine
6
Review|143 citations·2006
The plasma membrane redox system in aging
Dong‐Hoon Hyun, Joe O. Hernandez, Mark P. Mattson, Rafael de Cabo
SJR Q1Ageing Research Reviews
Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|137 citations·2001
Effect of proteasome inhibition on cellular oxidative damage, antioxidant defences and nitric oxide production
MoonHee Lee, Dong‐Hoon Hyun, Peter Jenner, Barry Halliwell
SJR Q1Journal of NeurochemistryOA

The ubiquitin/proteasome pathway plays an essential role in protein turnover in vivo, and contributes to removal of oxidatively damaged proteins. We examined the effects of proteasome inhibition on viability, oxidative damage and antioxidant defences in NT-2 and SK-N-MC cell lines. The selective proteasome inhibitor, lactacystin (1 microM) caused little loss of viability, but led to significant increases in levels of oxidative protein damage (measured as protein carbonyls), ubiquitinated protein

OphthalmologyMedicine
8
Review|116 citations·2023
The Interplay between Intracellular Iron Homeostasis and Neuroinflammation in Neurodegenerative Diseases
Jaewang Lee, Dong‐Hoon Hyun
SJR Q1AntioxidantsOA

Iron is essential for life. Many enzymes require iron for appropriate function. However, dysregulation of intracellular iron homeostasis produces excessive reactive oxygen species (ROS) via the Fenton reaction and causes devastating effects on cells, leading to ferroptosis, an iron-dependent cell death. In order to protect against harmful effects, the intracellular system regulates cellular iron levels through iron regulatory mechanisms, including hepcidin–ferroportin, divalent metal transporter

NeurologyNeuroscience
9
Article|103 citations·2012
AMPK activation with glabridin ameliorates adiposity and lipid dysregulation in obesity
Joo-Won Lee, Sung Sik Choe, Hagoon Jang, Jiyeong Kim, Hyun Woo Jeong, Hyunsun Jo, Kyeong-Hoon Jeong, Surendar Tadi, Myoung Gyu Park, Tae Hwan Kwak, Jin‐Man Kim, Dong‐Hoon Hyun
SJR Q1Journal of Lipid ResearchOA

In this study, we demonstrate that activation of AMP-activated protein kinase (AMPK) with glabridin alleviates adiposity and hyperlipidemia in obesity. In several obese rodent models, glabridin decreased body weight and adiposity with a concomitant reduction in fat cell size. Further, glabridin ameliorated fatty liver and plasma levels of triglyceride and cholesterol. In accordance with these findings, glabridin suppressed the expression of lipogenic genes such as sterol regulatory element bindi

PharmacologyPharmacology, Toxicology and Pharmaceutics
10
Article|92 citations·2002
Proteasomal dysfunction induced by 4‐hydroxy‐2,3‐trans‐nonenal, an end‐product of lipid peroxidation: a mechanism contributing to neurodegeneration?
Dong‐Hoon Hyun, Moon‐Hee Lee, Barry Halliwell, Peter Jenner
SJR Q1Journal of Neurochemistry

4-Hydroxy-2,3-trans-nonenal (HNE) is a neurotoxic unsaturated aldehyde end-product of lipid peroxidation. The addition of HNE to NT-2 and SK-N-MC cell lines induces apoptosis and we now investigated the time-course of events occurring prior to apoptosis. Treatment of both NT-2 and SK-N-MC cell lines with HNE led to HNE association with the proteasome, increased levels of protein carbonyls and ubiquitinated proteins, and decreased proteasomal function. There was also decreased metabolic activity,

PhysiologyMedicine
11
Article|64 citations·2006
Up‐regulation of plasma membrane‐associated redox activities in neuronal cells lacking functional mitochondria
Dong‐Hoon Hyun, Nicole Hunt, Scott S. Emerson, Joe O. Hernandez, Mark P. Mattson, Rafael de Cabo
SJR Q1Journal of Neurochemistry

Mitochondria-deficient cells (rho(o) cells) survive through enhanced glycolytic metabolism in the presence of pyruvate and uridine. The plasma membrane redox system (PMRS) contains several NAD(P)H-related enzymes and plays a key role in maintaining the levels of NAD(+)/NADH and reduced coenzyme Q. In this study, rho(o) cells were used to investigate how the PMRS is regulated under conditions of mitochondrial dysfunction. rho(o) cells exhibited a lower oxygen consumption rate and higher levels of

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Review|53 citations·2020
Insights into the New Cancer Therapy through Redox Homeostasis and Metabolic Shifts
Dong‐Hoon Hyun
SJR Q1CancersOA

Modest levels of reactive oxygen species (ROS) are necessary for intracellular signaling, cell division, and enzyme activation. These ROS are later eliminated by the body’s antioxidant defense system. High amounts of ROS cause carcinogenesis by altering the signaling pathways associated with metabolism, proliferation, metastasis, and cell survival. Cancer cells exhibit enhanced ATP production and high ROS levels, which allow them to maintain elevated proliferation through metabolic reprograming.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|46 citations·2005
Effect of overexpression of wild‐type or mutant parkin on the cellular response induced by toxic insults
Dong‐Hoon Hyun, MoonHee Lee, Barry Halliwell, Peter Jenner
SJR Q2Journal of Neuroscience Research

Mutations in parkin are involved in some cases of autosomal recessive juvenile parkinsonism (AR-JP), but it is not known how they result in nigral cell death. We examined the effect of parkin overexpression on the response of cells to various insults. Wild-type and AR-JP-associated mutant parkins (Del3-5, T240R, and Q311X) were overexpressed in NT-2 and SK-N-MC cells. Overexpressed wild-type parkin delayed cell death induced by serum withdrawal, H(2)O(2), 1-methyl-4-phenylpyridinium (MPP(+)), or

NeurologyMedicine
14
Article|40 citations·2013
Mitochondrial Function in Human Neuroblastoma Cells Is Up-Regulated and Protected by NQO1, a Plasma Membrane Redox Enzyme
Jiyeong Kim, Su Kyung Kim, Hwa Kyung Kim, Mark P. Mattson, Dong Hoon Hyun
SJR Q1PLoS ONEOA

These findings suggest that NQO1 is a potential target for the development of therapeutic agents for either preventing neuronal degeneration or promoting the death of neural tumor cells.

PhysiologyBiochemistry, Genetics and Molecular Biology
15
Article|39 citations·2010
The plasma membrane redox system is impaired by amyloid β-peptide and in the hippocampus and cerebral cortex of 3xTgAD mice
Dong Hoon Hyun, Mohamed R. Mughal, Hyunwon Yang, Ji Hyun Lee, Eun Joo Ko, Nicole Hunt, Rafael de Cabo, Mark P. Mattson
SJR Q1Experimental NeurologyOA
PhysiologyMedicine

Research Areas

Molecular BiologyNeurologyPhysiologySurgeryRehabilitationPharmacology

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