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Young-Kyu Ko

Korea University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Young-Kyu Ko's research lab focuses on cellular signaling mechanisms, particularly the roles of membrane microdomains such as caveolae and lipid rafts in signal transduction, protein sorting, and disease pathways. The lab investigates how membrane compartmentalization regulates growth factor signaling, apoptosis, and multidrug resistance in cancer cells, with a strong emphasis on the dynamic localization and function of key signaling proteins and enzymes like receptor tyrosine kinases, Daxx, and aminoacyl-tRNA synthetases. Using advanced imaging, proteomics, and molecular biology techniques, the lab explores the functional significance of subcellular protein trafficking and post-translational modifications in health and disease.

lipid raftssignal transductionmultidrug resistancecaveolaeprotein trafficking

Research Overview

Papers
76
Total Citations
4,419
Papers (5y)
20
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
20total
2017
2018
2019
2020
2023
Citations per year (5y)
650total
20172018201920202023

Selected Papers

15
1
Article|378 citations·1996
Localization of Platelet-derived Growth Factor-stimulated Phosphorylation Cascade to Caveolae
Pingsheng Liu, Yunshu Ying, Young‐Gyu Ko, Richard G.W. Anderson
SJR Q1Journal of Biological ChemistryOA

Previously we showed that interleukin 1 beta stimulates the conversion of sphingomyelin to ceramide in the caveolae fraction of normal human fibroblasts. The ceramide, in turn, blocked platelet-derived growth factor (PDGF) stimulated DNA synthesis. We now present evidence that the PDGF receptor initiates signal transduction from caveolae. Cell fractionation and immunocytochemistry show caveolae to be the principal location of PDGF receptors at the cell surface. Multiple caveolae proteins acquire

Cell BiologyBiochemistry, Genetics and Molecular Biology
2
Article|248 citations·2007
A Two‐Photon Fluorescent Probe for Lipid Raft Imaging: C‐Laurdan
Hwan Myung Kim, Hyo‐Jung Choo, Soonyoung Jung, Young‐Gyu Ko, Won‐Hwa Park, Seung‐Joon Jeon, Chul Hoon Kim, Taiha Joo, Bong Rae Cho
SJR Q1ChemBioChem

The lipid-rafts hypothesis proposes that naturally occurring lipid aggregates exist in the plane of membrane that are involved in signal transduction, protein sorting, and membrane transport. To understand their roles in cell biology, a direct visualization of such domains in living cells is essential. For this purpose, 6-dodecanoyl-2-(dimethylamino)naphthalene (laurdan), a membrane probe that is sensitive to the polarity of the membrane, has often been used. We have synthesized and characterize

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|185 citations·2013
MG53-induced IRS-1 ubiquitination negatively regulates skeletal myogenesis and insulin signalling
Jae-Sung Yi, Jun Sub Park, Young-Mi Ham, Nga Nguyen, Na-Rae Lee, Jin Hee Hong, Bong-Woo Kim, Hyun Lee, Chang Seok Lee, Byung‐Cheon Jeong, Hyun Kyu Song, Hana Cho
SJR Q1Nature CommunicationsOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|138 citations·2001
A Cofactor of tRNA Synthetase, p43, Is Secreted to Up-regulate Proinflammatory Genes
Young‐Gyu Ko, Heonyong Park, Taeho Kim, Joong-Won Lee, Sang Gyu Park, Wongi Seol, Jee Eun Kim, Won-Ha Lee, Se-Hwa Kim, Se-Hwa Kim, Jeong-Euy Park, Sung‐Hoon Kim
SJR Q1Journal of Biological ChemistryOA

An auxiliary factor of mammalian multi-aminoacyl-tRNA synthetases, p43, is thought to be a precursor of endothelial monocyte-activating polypeptide II (EMAP II) that triggers proinflammation in leukocytes and macrophages. In the present work, however, we have shown that p43 itself is specifically secreted from intact mammalian cells, while EMAP II is released only when the cells are disrupted. Secretion of p43 was also observed when its expression was increased. These results suggest that p43 it

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|128 citations·2012
Sialylation of epidermal growth factor receptor regulates receptor activity and chemosensitivity to gefitinib in colon cancer cells
Jung-Jin Park, Jae Youn Yi, Yeung Bae Jin, Yoon-Jin Lee, Jae‐Seon Lee, Yun‐Sil Lee, Young‐Gyu Ko, Min Young Lee
SJR Q1Biochemical Pharmacology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|114 citations·2000
Nucleolar Localization of Human Methionyl–Trna Synthetase and Its Role in Ribosomal RNA Synthesis
Young‐Gyu Ko, Young-Sun Kang, Eun Kyoung Kim, Sang Gyu Park, Sung‐Hoon Kim
SJR Q1The Journal of Cell BiologyOA

Human aminoacyl-tRNA synthetases (ARSs) are normally located in cytoplasm and are involved in protein synthesis. In the present work, we found that human methionyl-tRNA synthetase (MRS) was translocated to nucleolus in proliferative cells, but disappeared in quiescent cells. The nucleolar localization of MRS was triggered by various growth factors such as insulin, PDGF, and EGF. The presence of MRS in nucleoli depended on the integrity of RNA and the activity of RNA polymerase I in the nucleolus

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|112 citations·2001
Apoptosis Signal-regulating Kinase 1 Controls the Proapoptotic Function of Death-associated Protein (Daxx) in the Cytoplasm
Young‐Gyu Ko, Young-Sun Kang, Heonyong Park, Wongi Seol, Jin Young Kim, Taeho Kim, Hee-Sae Park, Eui‐Ju Choi, Sung‐Hoon Kim
SJR Q1Journal of Biological ChemistryOA

Although Daxx (death-associated protein) was first reported to mediate the apoptotic signal from Fas to JNK in the cytoplasm, other data suggested that Daxx is mainly located in the nucleus as a transcriptional regulator. Here, we demonstrated that cellular localization of Daxx could be determined by the relative concentration of a proapoptotic kinase, apoptosis signal-regulating kinase 1 (ASK1) by using immunofluorescence and transcriptional reporter assay. ASK1 sequestered Daxx in the cytoplas

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|96 citations·2003
Learning to coordinate redundant degrees of freedom in a dynamic balance task
Young‐Gyu Ko, John H. Challis, Karl M. Newell
SJR Q2Human Movement Science
Physical Therapy, Sports Therapy and RehabilitationHealth Professions
9
Article|55 citations·2009
Ginsenoside Rh2 induces ligand-independent Fas activation via lipid raft disruption
Jae-Sung Yi, Hyo‐Jung Choo, Bong-Rae Cho, Hwan-Myung Kim, Yong-Nyun Kim, Young-Mi Ham, Young‐Gyu Ko
SJR Q2Biochemical and Biophysical Research Communications
Cell BiologyBiochemistry, Genetics and Molecular Biology
10
Article|51 citations·2012
PTRF/Cavin-1 is Essential for Multidrug Resistance in Cancer Cells
Jae-Sung Yi, Dong‐Gi Mun, Hyun Lee, Jun-sub Park, Jung-Woo Lee, Jae‐Seon Lee, Su‐Jin Kim, Bong-Rae Cho, Sang‐Won Lee, Young‐Gyu Ko
SJR Q1Journal of Proteome Research

Since detergent-resistant lipid rafts play important roles in multidrug resistance (MDR), their comprehensive proteomics could provide new insights to understand the underlying molecular mechanism of MDR in cancer cells. In the present work, lipid rafts were isolated from MCF-7 and adriamycin-resistant MCF-7/ADR cells and their proteomes were analyzed by label-free quantitative proteomics. Polymerase I and transcript release factor (PTRF)/cavin-1 was measured to be upregulated along with multidr

Cell BiologyBiochemistry, Genetics and Molecular Biology
11
Article|50 citations·2001
Postural coordination patterns as a function of dynamics of the support surface
Young‐Gyu Ko, John H. Challis, Karl M. Newell
SJR Q2Human Movement Science
Physical Therapy, Sports Therapy and RehabilitationHealth Professions
12
Article|44 citations·2010
TRIM72, a novel negative feedback regulator of myogenesis, is transcriptionally activated by the synergism of MyoD (or myogenin) and MEF2
Soon-Young Jung, Young‐Gyu Ko
SJR Q2Biochemical and Biophysical Research Communications
Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|38 citations·2012
Wig1 prevents cellular senescence by regulating p21 mRNA decay through control of RISC recruitment
Bong Cho Kim, Hyung Chul Lee, Je‐Jung Lee, Chang‐Min Choi, Dong-Kwan Kim, Jae Cheol Lee, Young‐Gyu Ko, Jae‐Seon Lee, Young‐Gyu Ko, Jae‐Seon Lee, Jae‐Seon Lee
SJR Q1The EMBO JournalOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Review|31 citations·2002
Novel regulatory interactions and activities of mammalian tRNA synthetases
Young‐Gyu Ko, Heonyong Park, Sung‐Hoon Kim
SJR Q2PROTEOMICS

Aminoacyl-tRNA synthetases (ARSs) catalyze the attachment of specific amino acids to their cognate tRNAs, thereby ensuring the faithful translation of genetic code. In addition to their enzymatic function, these enzymes have been discovered to regulate various cellular functions such as tRNA export, ribosomal RNA synthesis, apoptosis, inflammation and angiogenesis in mammalian. The insights into the noncanonical activities of these enzymes have been obtained from their unique cellular localizati

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|31 citations·2014
Mitochondrial Complex I Deficiency Enhances Skeletal Myogenesis but Impairs Insulin Signaling through SIRT1 Inactivation
Jin Hee Hong, Bong-Woo Kim, Hyo‐Jung Choo, Jung-Jin Park, Jae-Sung Yi, Dong‐Min Yu, Hyun Lee, Gye-Soon Yoon, Jae‐Seon Lee, Young‐Gyu Ko
SJR Q1Journal of Biological ChemistryOA

To address whether mitochondrial biogenesis is essential for skeletal myogenesis, C2C12 myogenesis was investigated after knockdown of NADH dehydrogenase (ubiquintone) flavoprotein 1 (NDUFV1), which is an oxidative phosphorylation complex I subunit that is the first subunit to accept electrons from NADH. The NDUFVI knockdown enhanced C2C12 myogenesis by decreasing the NAD(+)/NADH ratio and subsequently inactivating SIRT1 and SIRT1 activators (pyruvate, SRT1720, and resveratrol) abolished the NDU

Geriatrics and GerontologyMedicine

Research Areas

Molecular BiologyCell BiologyPhysiologyCancer ResearchMaterials ChemistryPhysical Therapy, Sports Therapy and Rehabilitation

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