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Yun-Soo Bae

Ewha Womans University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Yun-Soo Bae's research lab focuses on the molecular mechanisms of reactive oxygen species (ROS) signaling in cellular physiology and pathology, particularly in growth factor and cytokine signaling pathways. The lab investigates how ROS, especially hydrogen peroxide (H₂O₂), function as second messengers in signal transduction, with a strong emphasis on the roles of NADPH oxidases (such as Nox1 and Nox2) and their regulatory proteins like Rac GTPase and β-Pix. Key research directions include the regulation of ROS production in immune cells and cancer cells, the interplay between ROS and receptor tyrosine kinases (e.g., EGFR, PDGFR), and the involvement of ROS in diseases such as atherosclerosis and cancer. The lab employs advanced techniques including live-cell imaging, RNA interference, and genetically modified mouse models to dissect redox signaling networks at the molecular level.

ROS signalingNADPH oxidaseredox signalinggrowth factor signalingNox1

Research Overview

Papers
184
Total Citations
14,372
Papers (5y)
35
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
35total
2022
2023
2024
2025
2026
Citations per year (5y)
48total
20222023202420252026

Selected Papers

15
1
Article|1,211 citations·1997
Epidermal Growth Factor (EGF)-induced Generation of Hydrogen Peroxide
Yun Soo Bae, Sang Won Kang, Min Seok Seo, Ivan Baines, Ephrem Tekle, P Boon Chock, Sue Goo Rhee
SJR Q1Journal of Biological ChemistryOA

Recent evidence indicates that reactive oxygen species (ROS) may function as intracellular messengers in receptor signaling pathways. The possible role of ROS in epidermal growth factor (EGF) signaling was therefore investigated. Stimulation of A431 human epidermoid carcinoma cells with EGF resulted in a transient increase in the intracellular concentration of ROS, measured with the oxidation-sensitive fluorescent probe 2',7'-dichlorofluorescin diacetate and laser-scanning confocal microscopy. T

ToxicologyPharmacology, Toxicology and Pharmaceutics
2
Review|631 citations·2011
Regulation of Reactive Oxygen Species Generation in Cell Signaling
Yun Soo Bae, Hyunjin Oh, Sue Goo Rhee, Young Do Yoo
SJR Q1Molecules and CellsOA
ImmunologyImmunology and Microbiology
3
Article|422 citations·2008
Macrophages Generate Reactive Oxygen Species in Response to Minimally Oxidized Low-Density Lipoprotein
Yun Soo Bae, Jee Hyun Lee, Soo Ho Choi, Sun Ah Kim, Felicidad Almazan, Joseph L. Witztum, Yury I. Miller
SJR Q1Circulation ResearchOA

Oxidative modification of low-density lipoprotein (LDL) plays a causative role in the development of atherosclerosis. In this study, we demonstrate that minimally oxidized LDL (mmLDL) stimulates intracellular reactive oxygen species (ROS) generation in macrophages through NADPH oxidase 2 (gp91phox/Nox2), which, in turn, induces production of RANTES and migration of smooth muscle cells. Peritoneal macrophages from gp91phox/Nox2(-/-) mice or J774 macrophages in which Nox2 was knocked down by small

ImmunologyImmunology and Microbiology
4
Article|407 citations·2011
Regulation of Reactive Oxygen Species Generation in Cell Signaling
배윤수, 오현진, 이서구, 유영도

Reactive oxygen species (ROS) including superoxide anion and hydrogen peroxide (H2O2) are thought to be by-products of aerobic respiration with damaging effects on DNA, protein, and lipid. A growing body of evidence indicates, however, that ROS are involved in the maintenance of redox homeostasis and various cellular signaling pathways. ROS are generated from diverse sources including mitochondrial respiratory chain, enzymatic activation of cytochrome p450, and NADPH oxidases further suggesting

5
Article|330 citations·1998
Activation of Phospholipase C-γ by Phosphatidylinositol 3,4,5-Trisphosphate
Yun Soo Bae, Lloyd G. Cantley, Ching‐Shih Chen, Seung‐Ryul Kim, Ki‐Sun Kwon, Sue Goo Rhee
SJR Q1Journal of Biological ChemistryOA

Signal transduction across cell membranes often involves the activation of both phosphatidylinositol (PI)-specific phospholipase C (PLC) and phosphoinositide 3-kinase (PI 3-kinase). Phosphatidylinositol 4,5-bisphosphate (PI(4,5)P2), a substrate for both enzymes, is converted to phosphatidylinositol 3,4, 5-trisphosphate (PI(3,4,5)P3) by the action of PI 3-kinase. Here, we show that PI(3,4,5)P3 activates purified PLC-gamma isozymes by interacting with their Src homology 2 domains. Furthermore, the

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|310 citations·2000
Platelet-derived Growth Factor-induced H2O2 Production Requires the Activation of Phosphatidylinositol 3-Kinase
Yun Soo Bae, Jee-Young Sung, Ohn-Soon Kim, Yeun Ju Kim, Kyu Chung Hur, Andrius Kazlauskas, Sue Goo Rhee
SJR Q1Journal of Biological ChemistryOA

Autophosphorylation of the platelet-derived growth factor (PDGF) receptor triggers intracellular signaling cascades as a result of recruitment of Src homology 2 domain-containing enzymes, including phosphatidylinositol 3-kinase (PI3K), the GTPase-activating protein of Ras (GAP), the protein-tyrosine phosphatase SHP-2, and phospholipase C-gamma1 (PLC-gamma1), to specific phosphotyrosine residues. The roles of these various effectors in PDGF-induced generation of H(2)O(2) have now been investigate

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|223 citations·2004
Sequential Activation of Phosphatidylinositol 3-Kinase, βPix, Rac1, and Nox1 in Growth Factor-Induced Production of H2O2
Hye Sun Park, Seung Hye Lee, Dongeun Park, Jun Sung Lee, Sung Ho Ryu, Won‐Jae Lee, Sue Goo Rhee, Yun Soo Bae
SJR Q2Molecular and Cellular BiologyOA

The generation of reactive oxygen species (ROS) in cells stimulated with growth factors requires the activation of phosphatidylinositol 3-kinase (PI3K) and the Rac protein. We report here that the COOH-terminal region of Nox1, a protein related to gp91(phox) (Nox2) of phagocytic cells, is constitutively associated with beta Pix, a guanine nucleotide exchange factor for Rac. Both growth factor-induced ROS production and Rac1 activation were completely blocked in cells depleted of beta Pix by RNA

BiochemistryBiochemistry, Genetics and Molecular Biology
8
Review|204 citations·2010
Dual oxidase in mucosal immunity and host–microbe homeostasis
Yun Soo Bae, Myoung Kwon Choi, Won‐Jae Lee
SJR Q1Trends in Immunology
ImmunologyImmunology and Microbiology
9
Article|138 citations·2014
Ahnak functions as a tumor suppressor via modulation of TGFβ/Smad signaling pathway
In Hye Lee, M Sohn, Hee Jung Lim, Sang-Hoon Yoon, Hyung Jung Oh, Sujin Shin, J.H. Shin, S-H Oh, Jeewon Kim, Daekee Lee, Dong‐Young Noh, Duk‐Soo Bae
SJR Q1OncogeneOA

We provide detailed mechanisms of Ahnak-mediated potentiation of transforming growth factor β (TGFβ) signaling, which leads to a negative regulation of cell growth. We show that Smad3 interacts with Ahnak through MH2 domain and that Ahnak stimulates Smad3 localization into nucleus leading to potentiating TGFβ-induced transcriptional activity of R-Smad. Moreover, overexpression of Ahnak resulted in growth retardation and cell cycle arrest through downregulation of c-Myc and cyclin D1/D2. We descr

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|136 citations·2005
Auxin‐induced reactive oxygen species production requires the activation of phosphatidylinositol 3‐kinase
Jung Hee Joo, Ho Jung Yoo, Inhwan Hwang, June Seung Lee, Kyoung Hee Nam, Yun Soo Bae
SJR Q1FEBS LettersOA

We recently reported that production of reactive oxygen species (ROS) is essential for auxin-induced gravitropic signaling. Here, we investigated the role of phosphatidylinositol 3-kinase and its product, PtdIns(3)P, in auxin-mediated ROS production and the root gravitropic response. Pretreatment with LY294002, an inhibitor of PtdIns 3-kinase activity, blocked auxin-mediated ROS generation, and reduced the sensitivity of root tissue to gravistimulation. The amount of PtdIns(3)P increased in resp

Plant ScienceAgricultural and Biological Sciences
11
Article|106 citations·2020
LPS-Induced Acute Kidney Injury Is Mediated by Nox4-SH3YL1
Jung-Yeon Yoo, Dae Ryong, Borim Kim, Eun Jung An, Sae Rom Lee, Jin Joo, Young Sun Kang, Jung Yeon Ghee, Jee‐Young Han, Yun Soo Bae
SJR Q1Cell ReportsOA

Cytosolic proteins are required for regulation of NADPH (nicotinamide adenine dinucleotide phosphate) oxidase (Nox) isozymes. Here we show that Src homology 3 (SH3) domain-containing YSC84-like 1 (SH3YL1), as a Nox4 cytosolic regulator, mediates lipopolysaccharide (LPS)-induced H2O2 generation, leading to acute kidney injury. The SH3YL1, Ysc84p/Lsb4p, Lsb3p, and plant FYVE proteins (SYLF) region and SH3 domain of SH3YL1 contribute to formation of a complex with Nox4-p22phox. Interaction of p22ph

ImmunologyImmunology and Microbiology
12
Article|72 citations·2007
Mechanism of Angiotensin II-induced Superoxide Production in Cells Reconstituted with Angiotensin Type 1 Receptor and the Components of NADPH Oxidase
Hyun Sook Choi, Thomas L. Leto, László Hunyady, Kevin Catt, Yun Soo Bae, Sue Goo Rhee
SJR Q1Journal of Biological ChemistryOA

The mechanism of angiotensin II (Ang II)-induced superoxide production was investigated with HEK293 or Chinese hamster ovary cells reconstituted with the angiotensin type 1 receptor (AT(1)R) and NADPH oxidase (either Nox1 or Nox2) along with a pair of adaptor subunits (either NOXO1 with NOXA1 or p47(phox) with p67(phox)). Ang II enhanced the activity of both Nox1 and Nox2 supported by either adaptor pair, with more effective activation of Nox1 in the presence of NOXO1 and NOXA1 and of Nox2 in th

PhysiologyMedicine
13
Article|66 citations·2008
Ahnak Protein Activates Protein Kinase C (PKC) through Dissociation of the PKC-Protein Phosphatase 2A Complex
In Hye Lee, Hee Jung Lim, Suhyeon Yoon, Je Kyung Seong, Duk Soo Bae, Sue Goo Rhee, Yun Soo Bae
SJR Q1Journal of Biological ChemistryOA

We have previously reported that central repeated units (CRUs) of Ahnak act as a scaffolding protein networking phospholipase Cgamma and protein kinase C (PKC). Here, we demonstrate that an Ahnak derivative consisting of four central repeated units binds and activates PKC-alpha in a phosphatidylserine/1,2-dioleoyl-sn-glycerol-independent manner. Moreover, NIH3T3 cells expressing the 4 CRUs of Ahnak showed enhanced c-Raf, MEK, and Erk phosphorylation in response to phorbol 12-myristate 13-acetate

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|64 citations·2011
Dual Oxidase 2 is Essential for the Toll-Like Receptor 5-Mediated Inflammatory Response in Airway Mucosa
Jung-Hee Joo, Ji-Hwan Ryu, Chang‐Hoon Kim, Hyun Jik Kim, Mi-Sun Suh, Jinoh Kim, Seung Yeun Chung, Sang Nam Lee, Hwan Mook Kim, Yun Soo Bae, Joo‐Heon Yoon
SJR Q1Antioxidants and Redox Signaling

Taken together, we propose that DUOX2 plays pivotal roles in TLR5-dependent inflammatory response of nasal airway epithelium.

ImmunologyImmunology and Microbiology
15
Article|58 citations·2018
Ahnak promotes tumor metastasis through transforming growth factor-β-mediated epithelial-mesenchymal transition
Mira Sohn, Sunmee Shin, Jung-Yeon Yoo, Yookyung Goh, In Hye Lee, Yun Soo Bae
SJR Q1Scientific ReportsOA

Previously, we reported a molecular mechanism by which Ahnak potentiates transforming growth factor-β (TGFβ) signaling during cell growth. Here, we show that Ahnak induces epithelial-mesenchymal transition (EMT) in response to TGFβ. EMT phenotypes, including altered in cell morphology, and expression patterns of various EMT marker genes were detected in HaCaT keratinocytes transfected with Ahnak-specific siRNA. Knockdown of Ahnak expression in HaCaT keratinocytes resulted in attenuated cell migr

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

ImmunologyMolecular BiologyPulmonary and Respiratory MedicinePhysiologyGeneticsCell Biology

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