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Kee Jung Yoon

Sungkyunkwan University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Kee Jung Yoon's research lab focuses on molecular mechanisms regulating stem cell fate and tissue development, with a central emphasis on neural and mesenchymal stem cell differentiation. The lab investigates key signaling pathways such as Notch, FGF, Hippo/YAP, and metabolic regulators like creatine in controlling cell proliferation, lineage specification, and organ growth. Additional research explores bioactive compounds from medicinal plants, particularly Panax ginseng, for their anti-inflammatory and regenerative properties. The lab integrates molecular biology, stem cell biology, and pharmacology to uncover therapeutic targets for neurodegenerative diseases and metabolic disorders.

stem cell differentiationNotch signalingHippo pathwaycreatine metabolismginseng phytochemicals

Research Overview

Papers
94
Total Citations
6,012
Papers (5y)
9
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
9total
2021
2022
2023
2024
2025
Citations per year (5y)
26total
20212022202320242025

Selected Papers

15
1
Review|586 citations·2005
Notch signaling in the mammalian central nervous system: insights from mouse mutants
Keejung Yoon, Nicholas Gaiano
SJR Q1Nature Neuroscience
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|189 citations·2004
Fibroblast Growth Factor Receptor Signaling Promotes Radial Glial Identity and Interacts with Notch1 Signaling in Telencephalic Progenitors
Keejung Yoon, Susana Vaz Nery, Michael Rutlin, Freddy Radtke, Gord Fishell, Nicholas Gaiano
SJR Q1Journal of NeuroscienceOA

The Notch and fibroblast growth factor (FGF) pathways both regulate cell fate specification during mammalian neural development. We have shown previously that Notch1 activation in the murine forebrain promotes radial glial identity. This result, together with recent evidence that radial glia can be progenitors, suggested that Notch1 signaling might promote progenitor and radial glial character simultaneously. Consistent with this idea, we found that in addition to promoting radial glial characte

Developmental NeuroscienceNeuroscience
3
Article|52 citations·2010
Human B Cell Development and Antibody Production in Humanized NOD/SCID/IL-2Rγnull (NSG) Mice Conditioned by Busulfan
Bongkum Choi, Eunyoung Chun, Miyoung Kim, Seong‐Tae Kim, Keejung Yoon, Ki‐Young Lee, Sung Joo Kim, Sung Joo Kim, Sung Joo Kim
SJR Q1Journal of Clinical Immunology
Radiology, Nuclear Medicine and ImagingMedicine
4
Article|49 citations·2018
Ttyh1 regulates embryonic neural stem cell properties by enhancing the Notch signaling pathway
Juwan Kim, Dasol Han, Sung‐Hyun Byun, Mookwang Kwon, Jae Youl Cho, Samuel J. Pleasure, Keejung Yoon
SJR Q1EMBO ReportsOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|46 citations·2015
YAP/TAZ enhance mammalian embryonic neural stem cell characteristics in a Tead-dependent manner
Dasol Han, Sung‐Hyun Byun, Soo-Jeong Park, Juwan Kim, Inhee Kim, Soobong Ha, Mookwang Kwon, Keejung Yoon
SJR Q2Biochemical and Biophysical Research Communications
Cell BiologyBiochemistry, Genetics and Molecular Biology
6
Article|45 citations·2018
Identification of a novel triterpene saponin from Panax ginseng seeds, pseudoginsenoside RT8, and its antiinflammatory activity
Taewoong Rho, Hyun Woo Jeong, Yong Deog Hong, Keejung Yoon, Keejung Yoon, Jae Youl Cho, Kee Dong Yoon, Kee Dong Yoon
SJR Q1Journal of Ginseng ResearchOA

Panax ginseng Meyer (Araliaceae) is a highly valued medicinal plant in Asian regions, especially in Korea, China, and Japan. Chemical and biological studies on P. ginseng have focused primarily on its roots, whereas the seeds remain poorly understood. This study explores the phytochemical and biological properties of compounds from P. ginseng seeds. P. ginseng seeds were extracted with methanol, and 16 compounds were isolated using various chromatographic methods. The chemical structures of the

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|36 citations·2014
Creatine Inhibits Adipogenesis by Downregulating Insulin-Induced Activation of the Phosphatidylinositol 3-Kinase Signaling Pathway
Nayeon Lee, Inhee Kim, Soo-Jeong Park, Dasol Han, Soobong Ha, Mookwang Kwon, Ju‐Wan Kim, Sung‐Hyun Byun, Wonil Oh, Hong Bae Jeon, Dae‐Hyuk Kweon, Jae Youl Cho
SJR Q2Stem Cells and Development

Creatine is a nitrogenous organic acid known to function in adenosine triphosphate (ATP) metabolism. Recent evidence indicates that creatine regulates the differentiation of mesenchymal stem cells (MSCs) in processes such as osteogenesis and myogenesis. In this study, we show that creatine also has a negative regulatory effect on fat cell formation. Creatine inhibits the accumulation of cytoplasmic triglycerides in a dose-dependent manner irrespective of the adipogenic cell models used, includin

PhysiologyMedicine
8
Article|29 citations·2017
Neprilysin facilitates adipogenesis through potentiation of the phosphatidylinositol 3-kinase (PI3K) signaling pathway
Juwan Kim, Dasol Han, Sung‐Hyun Byun, Mookwang Kwon, Sun‐Jung Cho, Young Ho Koh, Keejung Yoon
SJR Q1Molecular and Cellular Biochemistry
Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|25 citations·2001
Brief Comment : Stable Expression of Human Immunodeficiency Virus Type 1 Nef Confers Resistance against Fas-Mediated Apoptosis
Keejung Yoon, Jae Gyun Jeong, Sunyoung Kim
SJR Q3AIDS Research and Human Retroviruses

To investigate the effect of Nef on Fas-mediated apoptosis, we compared T cells, both population and subclones stably expressing Nef from HIV-1(NL432), with Nef(-) control cells. Fas-mediated apoptosis was significantly delayed in Nef(+) cells as determined by annexin V staining and the percentage of apoptotic cells was lower in all Nef-expressing cells than in the control cells by a maximum of 10-fold. Next we measured cell surface levels of Fas to test whether the delayed apoptosis in Nef(+) c

VirologyImmunology and Microbiology
10
Article|12 citations·2020
YAP Enhances FGF2-Dependent Neural Stem Cell Proliferation by Induction of FGF Receptor Expression
Dasol Han, Sun Min Lee, Mookwang Kwon, Hogyun Noh, Ju Hyun Lee, Youngik Yoon, Jae Youl Cho, Keejung Yoon
SJR Q2Stem Cells and Development

The Hippo signaling pathway regulates cell proliferation and organ growth, and its activation is mainly reflected by the phosphorylation levels of Yes-associated protein (YAP). In this study, we show that YAP facilitates embryonic neural stem cell proliferation by elevating their responsiveness to fibroblast growth factor 2 (FGF2), one of the major growth factors for neural stem cells, in vivo as well as in vitro. Western blot and quantitative real-time PCR analyses revealed that expression of t

Cell BiologyBiochemistry, Genetics and Molecular Biology
11
Article|11 citations·2010
Among γ-secretase substrates Notch1 alone is sufficient to block neurogenesis but does not confer self-renewal properties to neural stem cells
Myung-Soon Yang, Jin-Su Hong, Seong‐Tae Kim, Ki‐Young Lee, Kye Won Park, Suk‐Tae Kwon, Dae‐Hyuk Kweon, Young Ho Koh, Nicholas Gaiano, Keejung Yoon
SJR Q2Biochemical and Biophysical Research Communications
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|10 citations·2014
Notch Intracellular Domain Deficiency in Nuclear Localization Activity Retains the Ability to Enhance Neural Stem Cell Character and Block Neurogenesis in Mammalian Brain Development
Jiwon Jang, Sung‐Hyun Byun, Dasol Han, Junsub Lee, Juwan Kim, Nayeon Lee, Inhee Kim, Soo-Jeong Park, Soobong Ha, Mookwang Kwon, Jyhyun Ahn, Woo‐Jae Chung
SJR Q2Stem Cells and Development

Notch has a broad range of regulatory functions in many developmental processes, including hematopoiesis, neurogenesis, and angiogenesis. Notch has several key functional regions such as the RBP-Jκ/CBF1 association module (RAM) domain, nuclear localization signals (NLS), and ankyrin (ANK) repeats. However, previous reports assessing the level of importance of these domains in the Notch signaling pathway are controversial. In this study, we have assessed the level of contribution of each Notch do

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|9 citations·1999
Lack of negative influence on the cellular transcription factors NF-κB and AP-1 by the Nef protein of human immunodeficiency virus type 1
Keejung Yoon, Sunyoung Kim
SJR Q2Journal of General Virology

In order to investigate the molecular mechanism of the reported negative effect of the Nef protein of human immunodeficiency virus type 1 (HIV-1) on the cellular transcription factors NF-kappaB and AP-1, human T cell lines (both populations and subclones) expressing the nef gene from HIV-1 clone pNL432 were constructed. Functional expression of the nef gene was confirmed by downregulation of CD4 and MHC class I proteins on the cell surface as measured by fluorescence-activated cell sorter analys

VirologyImmunology and Microbiology
14
Article|9 citations·2012
Polycation-mediated enhancement of retroviral transduction efficiency depends on target cell types and pseudotyped Env proteins: Implication for gene transfer into neural stem cells
Jiwon Jang, Junsup Lee, Seong‐Tae Kim, Ki‐Young Lee, Jae Youl Cho, Dae‐Hyuk Kweon, Suk‐Tae Kwon, Young Ho Koh, Sunyoung Kim, Keejung Yoon
SJR Q2Neurochemistry International
Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|9 citations·2020
Non-cell autonomous promotion of astrogenesis at late embryonic stages by constitutive YAP activation
Dasol Han, Mookwang Kwon, Sun Min Lee, Samuel J. Pleasure, Keejung Yoon
SJR Q1Scientific ReportsOA

Abstract Although astrocytes have gained increased recognition as an important regulator in normal brain function and pathology, the mechanisms underlying their genesis are not well understood. In this study, we show that constitutive YAP activation by in utero introduction of a non-degradable form of the YAP gene (YAP 5SA) causes productive GFAP + cell generation at late embryonic periods, and this activity is nuclear localization- and TEAD transcription factor-dependent. Moreover, we found tha

Cell BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyCell BiologyVirologyGeneticsDevelopmental NeuroscienceImmunology

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