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Woo-Jin Jung

Ewha Womans University · 生化学・遺伝学・分子生物学

研究室紹介

Professor Woo-Jin Jung's research lab specializes in redox biology and cellular signaling, focusing on the molecular mechanisms of thiol-dependent redox enzymes and their roles in inflammation, apoptosis, and disease pathogenesis. The lab investigates key redox regulators such as thioredoxin-related proteins (e.g., TRP14), peroxiredoxins, and sulfiredoxin, elucidating their enzymatic functions, substrate specificity, and regulatory roles in transcription factor activation (e.g., NF-κB) and stress responses. A central theme is the redox regulation of signaling pathways in immune and bone-related diseases, including osteoporosis and periodontitis, with translational interest in repurposing anti-inflammatory drugs like benzydamine. The lab integrates biochemical, structural, and cell biological approaches to uncover novel redox targets for therapeutic intervention.

redox regulationthioredoxin systemNF-κB signalingosteoclast differentiationperoxiredoxins

Research Overview

Papers
89
Total Citations
7,928
Papers (5y)
17
Primary Field
生化学・遺伝学・分子生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
17total
2021
2022
2023
2025
2026
Citations per year (5y)
97total
20212022202320252026

Selected Papers

15
1
Article|305 citations·2013
Nrf2 deficiency induces oxidative stress and promotes RANKL-induced osteoclast differentiation
Seungha Hyeon, Hyojung Lee, Yoohee Yang, Woojin Jeong
SJR Q1Free Radical Biology and Medicine
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|214 citations·2000
Thioredoxin-dependent Hydroperoxide Peroxidase Activity of Bacterioferritin Comigratory Protein (BCP) as a New Member of the Thiol-specific Antioxidant Protein (TSA)/Alkyl Hydroperoxide Peroxidase C (AhpC) Family
Woojin Jeong, Mee-Kyung Cha, Il-Han Kim
SJR Q1Journal of Biological ChemistryOA

Escherichia coli bacterioferritin comigratory protein (BCP), a putative bacterial member of the TSA/AhpC family, was characterized as a thiol peroxidase. BCP showed a thioredoxin-dependent thiol peroxidase activity. BCP preferentially reduced linoleic acid hydroperoxide rather than H(2)O(2) and t-butyl hydroperoxide with the use of thioredoxin as an in vivo immediate electron donor. The value of V(max)/K(m) of BCP for linoleic acid hydroperoxide was calculated to be 5-fold higher than that for H

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|151 citations·2006
Molecular Mechanism of the Reduction of Cysteine Sulfinic Acid of Peroxiredoxin to Cysteine by Mammalian Sulfiredoxin
Woojin Jeong, Sung Jun Park, Tong‐Shin Chang, Duck‐Yeon Lee, Sue Goo Rhee
SJR Q1Journal of Biological ChemistryOA

Among many proteins with cysteine sulfinic acid (Cys-SO2H) residues, the sulfinic forms of certain peroxiredoxins (Prxs) are selectively reduced by sulfiredoxin (Srx) in the presence of ATP. All Srx enzymes contain a conserved cysteine residue. To elucidate the mechanism of the Srx-catalyzed reaction, we generated various mutants of Srx and examined their interaction with PrxI, their ATPase activity, and their ability to reduce sulfinic PrxI. Our results suggest that three surface-exposed amino

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Review|127 citations·2012
Role of sulfiredoxin as a regulator of peroxiredoxin function and regulation of its expression
Woojin Jeong, Soo Han Bae, Michel B. Tolédano, Sue Goo Rhee
SJR Q1Free Radical Biology and Medicine
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|121 citations·2004
Identification and Characterization of TRP14, a Thioredoxin-related Protein of 14 kDa
Woojin Jeong, Hae Won Yoon, Seung-Rock Lee, Sue Goo Rhee
SJR Q1Journal of Biological ChemistryOA

We have identified and characterized a 14-kDa human thioredoxin (Trx)-related protein designated TRP14. This cytosolic protein was expressed in all tissues and cell types examined, generally in smaller amounts than Trx1. Although TRP14 contains five cysteines, only the two Cys residues in its WCPDC motif were exposed and redox sensitive. Unlike Trx1, which was an equally good substrate for both Trx reductase 1 (TrxR1) and TrxR2, oxidized TRP14 was reduced by TrxR1 but not by TrxR2. Biochemical c

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|106 citations·2008
Dynein Light Chain LC8 Negatively Regulates NF-κB through the Redox-dependent Interaction with IκBα
Yuyeon Jung, Hojin Kim, Sun Hee Min, Sue Goo Rhee, Woojin Jeong
SJR Q1Journal of Biological ChemistryOA

Redox regulation of nuclear factor κB (NF-κB) has been described, but the molecular mechanism underlying such regulation has remained unclear. We recently showed that a novel disulfide reductase, TRP14, inhibits tumor necrosis factor α (TNFα)-induced NF-κB activation, and we identified the dynein light chain LC8, which interacts with the NF-κB inhibitor IκBα, as a potential substrate of TRP14. We now show the molecular mechanism by which NF-κB activation is redox-dependently regulated through LC

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|78 citations·2004
Roles of TRP14, a Thioredoxin-related Protein in Tumor Necrosis Factor-α Signaling Pathways
Woojin Jeong, Tong-Shin Chang, Emily S. Boja, Henry M. Fales, Sue Goo Rhee
SJR Q1Journal of Biological ChemistryOA

The possible roles of a 14-kDa human thioredoxin (Trx)-related protein (TRP14) in TNF-α signaling were studied in comparison with those of Trx1 by RNA interferencein HeLa cells. Depletion of TRP14 augmented the TNF-α-induced phosphorylation and degradation of IκBα as well as the consequent activation of NF-κB to a greater extent than did Trx1 depletion. Deficiency of TRP14 or Trx1 enhanced TNF-α-induced activation of caspases and subsequent apoptosis by a similar extent. The TNF-α-induced activa

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|74 citations·2019
Benzydamine inhibits osteoclast differentiation and bone resorption via down-regulation of interleukin-1 expression
Han Saem Son, Jun‐Ho Lee, Hye In Lee, Narae Kim, You-Jin Jo, Gong-Rak Lee, Seong-Eun Hong, Minjeong Kwon, Nam‐Young Kim, Hyun Jin Kim, Jin Ha Park, Soo Young Lee
SJR Q1Acta Pharmaceutica Sinica BOA

Bone diseases such as osteoporosis and periodontitis are induced by excessive osteoclastic activity, which is closely associated with inflammation. Benzydamine (BA) has been used as a cytokine-suppressive or non-steroidal anti-inflammatory drug that inhibits the production of pro-inflammatory cytokines or prostaglandins. However, its role in osteoclast differentiation and function remains unknown. Here, we explored the role of BA in regulating osteoclast differentiation and elucidated the underl

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|55 citations·2010
Redox Regulation of Lipopolysaccharide-mediated Sulfiredoxin Induction, Which Depends on Both AP-1 and Nrf2
Hojin Kim, Yuyeon Jung, Bong Soo Shin, 김혜련, Hyunsook Song, Soo Han Bae, Sue Goo Rhee, Woojin Jeong
SJR Q1Journal of Biological ChemistryOA

Sulfiredoxin (Srx) is an enzyme that catalyzes the reduction of cysteine sulfinic acid of hyperoxidized peroxiredoxins and exerts a protective antioxidant role. Here we investigated the regulatory mechanism of Srx induction by lipopolysaccharide (LPS) in mouse macrophages. LPS up-regulated Srx expression on the transcriptional level. The promoter region of the Srx gene contained putative NF-κB and AP-1 (activator protein-1) sites, and the proximal site of three AP-1 sites was embedded within the

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|52 citations·2015
Sulfiredoxin inhibitor induces preferential death of cancer cells through reactive oxygen species-mediated mitochondrial damage
Hojin Kim, Gong-Rak Lee, Ji‐Won Kim, Jin Young Baek, You-Jin Jo, Seong-Eun Hong, Sung Hoon Kim, Jiae Lee, Hye In Lee, Song-Kyu Park, Hwan Mook Kim, Hwa Jeong Lee
SJR Q1Free Radical Biology and Medicine
Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Review|49 citations·2009
Thioredoxin-related protein 14, a new member of the thioredoxin family with disulfide reductase activity: Implication in the redox regulation of TNF-α signaling
Woojin Jeong, Yuyeon Jung, Hojin Kim, Sun Joo Park, Sue Goo Rhee
SJR Q1Free Radical Biology and Medicine
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|46 citations·2008
ERp16, an Endoplasmic Reticulum-resident Thiol-disulfide Oxidoreductase
Woojin Jeong, Duck‐Yeon Lee, Sunjoo Park, Sue Goo Rhee
SJR Q1Journal of Biological ChemistryOA

We have characterized the properties and putative role of a mammalian thioredoxin-like protein, ERp16 (previously designated ERp18, ERp19, or hTLP19). The predicted amino acid sequence of the 172-residue human protein contains an NH(2)-terminal signal peptide, a thioredoxin-like domain with an active site motif (CGAC), and a COOH-terminal endoplasmic reticulum (ER) retention sequence (EDEL). Analyses indicated that the mature protein (comprising 146 residues) is generated by cleavage of the 26-r

Cell BiologyBiochemistry, Genetics and Molecular Biology
13
Article|46 citations·2017
Euphorbia factor L1 inhibits osteoclastogenesis by regulating cellular redox status and induces Fas-mediated apoptosis in osteoclast
Seong-Eun Hong, Jun‐Ho Lee, Dong-Hyun Seo, Hye In Lee, Doo Ri Park, Gong-Rak Lee, You-Jin Jo, Narae Kim, Min‐Jung Kwon, Hansem Shon, Eun Kyoung Seo, Han-Sung Kim
SJR Q1Free Radical Biology and Medicine
Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|34 citations·2018
Skullcapflavone II inhibits osteoclastogenesis by regulating reactive oxygen species and attenuates the survival and resorption function of osteoclasts by modulating integrin signaling
Jiae Lee, Han Saem Son, Hye In Lee, Gong‐Rak Lee, You‐Jin Jo, Seong‐Eun Hong, Narae Kim, Minjeong Kwon, Nam‐Young Kim, Hyun Jin Kim, Yoo Jin Lee, Eun Kyoung Seo
SJR Q1The FASEB Journal

ABSTRACT Many bone diseases, such as osteoporosis and rheumatoid arthritis, are attributed to an increase in osteoclast number or activity; therefore, control of osteoclasts has significant clinical implications. This study shows how skullcapflavone II (SFII), a flavonoid with anti‐inflammatory activity, regulates osteoclast differentiation, survival, and function. SFII inhibited osteoclastogenesis with decreased activation of MAPKs, Src, and cAMP response element–binding protein (CREB), which h

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|28 citations·2020
Cinchonine inhibits osteoclast differentiation by regulating TAK1 and AKT, and promotes osteogenesis
You‐Jin Jo, Hye In Lee, Narae Kim, Donghyun Hwang, Jiae Lee, Gong‐Rak Lee, Seong‐Eun Hong, Hana Lee, Minjeong Kwon, Nam‐Young Kim, Hyun Jin Kim, Jin Ha Park
SJR Q1Journal of Cellular Physiology

Cinchonine (CN) has been known to exert antimalarial, antiplatelet, and antiobesity effects. It was also recently reported to inhibit transforming growth factor β-activated kinase 1 (TAK1) and protein kinase B (AKT) through binding to tumor necrosis factor receptor-associated factor 6 (TRAF6). However, its role in bone metabolism remains largely unknown. Here, we showed that CN inhibits osteoclast differentiation with decreased expression of nuclear factor of activated T-cells, cytoplasmic 1 (NF

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyEpidemiologyCell BiologyPathology and Forensic MedicineHepatologyCivil and Structural Engineering

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