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Jong‐Sun Kang

Sungkyunkwan University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Jong-Sun Kang's research lab focuses on the molecular mechanisms underlying skeletal myogenesis, with a central emphasis on cell adhesion molecules and signaling pathways that regulate myoblast differentiation, proliferation, and cell fate decisions. The lab investigates the roles of immunoglobulin superfamily proteins such as CDO and BOC in mediating cell-cell contact-dependent signals, particularly through interactions with cadherins and downstream activation of p38MAPK and AKT pathways. A key focus is understanding the crosstalk between tumor suppressor-like signaling molecules (e.g., PKN2) and myogenic regulators in controlling cell survival and differentiation during muscle development and repair. The lab also explores oncogene-induced alterations in anchorage-independent growth and cell cycle control, linking cancer biology to myogenic signaling.

myogenesiscell adhesionCDOsignaling pathwaysmuscle development

Research Overview

Papers
128
Total Citations
3,166
Papers (5y)
45
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
45total
2021
2022
2023
2024
2025
Citations per year (5y)
611total
20212022202320242025

Selected Papers

15
1
Article|124 citations·2011
Mutations in CDON, Encoding a Hedgehog Receptor, Result in Holoprosencephaly and Defective Interactions with Other Hedgehog Receptors
Gyu‐Un Bae, Sabina Domené, Erich Roessler, Karen A. Schachter, Jong‐Sun Kang, Maximilian Muenke, Robert S. Krauss
SJR Q1The American Journal of Human GeneticsOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|97 citations·1996
Ras Induces Anchorage-Independent Growth by Subverting Multiple Adhesion-Regulated Cell Cycle Events
Jong‐Sun Kang, Robert S. Krauss
SJR Q2Molecular and Cellular BiologyOA

Anchorage-independent growth is a hallmark of transformed cells, but little is known of the molecular mechanisms that underlie this phenomenon. We describe here studies of cell cycle control of anchorage-independent growth induced by the ras oncogene, with the use of a somatic cell mutant fibroblast line (ER-1-2) that is specifically defective in oncogene-mediated, anchorage-independent growth. Control, nontransformed PKC3-F4 cells and ER-1-2 cells cannot proliferate in semisolid medium. Three i

OncologyMedicine
3
Article|91 citations·1998
CDO, A Robo-related Cell Surface Protein that Mediates Myogenic Differentiation
Jong‐Sun Kang, Philip J. Mulieri, Cary Miller, David Sassoon, Robert S. Krauss
SJR Q1The Journal of Cell BiologyOA

CDO, a member of the Ig/fibronectin type III repeat subfamily of transmembrane proteins that includes the axon guidance receptor Robo, was identified by virtue of its down-regulation by the ras oncogene. We report here that one prominent site of cdo mRNA expression during murine embryogenesis is the early myogenic compartment (newly formed somites, dermomyotome and myotome). CDO is expressed in proliferating and differentiating C2C12 myoblasts and in myoblast lines derived by treating 10T1/2 fib

Cellular and Molecular NeuroscienceNeuroscience
4
Article|89 citations·1997
CDO: An Oncogene-, Serum-, and Anchorage-regulated Member of the Ig/Fibronectin Type III Repeat Family
Jong‐Sun Kang, Min Gao, Jessica Feinleib, Philip D. Cotter, S N Guadagno, Robert S. Krauss
SJR Q1The Journal of Cell BiologyOA

Cell adhesion molecules of the Ig superfamily are implicated in a wide variety of biological processes, including cell migration, axon guidance and fasciculation, and growth control and tumorigenesis. Expression of these proteins can be highly dynamic and cell type specific, but little is known of the signals that regulate such specificity. Reported here is the molecular cloning and characterization of rat CDO, a novel cell surface glycoprotein of the Ig superfamily that contains five Ig-like re

Immunology and AllergyMedicine
5
Review|89 citations·2010
Muscle stem cells in developmental and regenerative myogenesis
Jong‐Sun Kang, Robert S. Krauss
SJR Q1Current Opinion in Clinical Nutrition & Metabolic CareOA

Genetic determinants of formation or repair of various muscles during different stages of myogenesis are unexpectedly diverse. Future studies should illuminate these differences, as well as mechanisms that underlie stem cell properties of satellite cells.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|77 citations·2003
Promyogenic members of the Ig and cadherin families associate to positively regulate differentiation
Jong‐Sun Kang, Jessica Feinleib, Sarah M. Knox, Michael A. Ketteringham, Robert S. Krauss
SJR Q1Proceedings of the National Academy of SciencesOA

Determination and differentiation of cells in the skeletal muscle lineage is positively regulated by cell-cell contact. Cell-surface proteins proposed to mediate this effect include both classical cadherins and Ig superfamily members; potential interactions between the promyogenic activities of these classes of protein, however, are unknown. We show here that CDO and BOC, two promyogenic Ig superfamily members that bind to each other in a cis fashion, form complexes with N- and M-cadherin. These

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|72 citations·2016
PKN2 and Cdo interact to activate AKT and promote myoblast differentiation
Sang-Jin Lee, Jeongmi Hwang, Hyeon‐Ju Jeong, Miran Yoo, Ga-Yeon Go, Jae-Rin Lee, Young-Eun Leem, Jong Woo Park, Dong Wan Seo, Yong Kee Kim, Myong‐Joon Hahn, Jeung‐Whan Han
SJR Q1Cell Death and DiseaseOA

Skeletal myogenesis is coordinated by multiple signaling pathways that control cell adhesion/migration, survival and differentiation accompanied by muscle-specific gene expression. A cell surface protein Cdo is involved in cell contact-mediated promyogenic signals through activation of p38MAPK and AKT. Protein kinase C-related kinase 2 (PKN2/PRK2) is implicated in regulation of various biological processes, including cell migration, adhesion and death. It has been shown to interact with and inhi

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|51 citations·2014
Cdo suppresses canonical Wnt signalling via interaction with Lrp6 thereby promoting neuronal differentiation
Myong‐Ho Jeong, Seok‐Man Ho, Tuan Anh Vuong, Shin-Bum Jo, Guizhong Liu, Stuart A. Aaronson, Young-Eun Leem, Jong‐Sun Kang
SJR Q1Nature CommunicationsOA
GeneticsBiochemistry, Genetics and Molecular Biology
9
Article|44 citations·2009
Cdo Binds Abl To Promote p38α/β Mitogen-Activated Protein Kinase Activity and Myogenic Differentiation
Gyu‐Un Bae, Bok-Geon Kim, Hyejin Lee, Jieun Oh, Su‐Jae Lee, Wei Zhang, Robert S. Krauss, Jong‐Sun Kang
SJR Q2Molecular and Cellular BiologyOA

The p38 mitogen-activated protein kinase (MAPK) pathway is required for differentiation of skeletal myoblasts, but how the pathway is activated during this process is not well understood. One mechanism involves the cell surface receptor Cdo (also known as Cdon), which binds to Bnip-2 and JLP, scaffold proteins for Cdc42 and p38, respectively; formation of these complexes results in Bnip-2/Cdc42-dependent activation of p38. It has been reported that the tyrosine kinase Abl promotes myogenic diffe

HematologyMedicine
10
Article|41 citations·2020
Satellite cell‐specific ablation of Cdon impairs integrin activation, FGF signalling, and muscle regeneration
Ju‐Hyeon Bae, Mingi Hong, Hyeon‐Ju Jeong, Hyebeen Kim, Sang‐Jin Lee, Dongryeol Ryu, Gyu‐Un Bae, Sung Chun Cho, Young‐Sam Lee, Robert S. Krauss, Jong‐Sun Kang
SJR Q1Journal of Cachexia Sarcopenia and MuscleOA

Abstract Background Perturbation in cell adhesion and growth factor signalling in satellite cells results in decreased muscle regenerative capacity. Cdon (also called Cdo) is a component of cell adhesion complexes implicated in myogenic differentiation, but its role in muscle regeneration remains to be determined. Methods We generated inducible satellite cell‐specific Cdon ablation in mice by utilizing a conditional Cdon allele and Pax7 CreERT2 . To induce Cdon ablation, mice were intraperitonea

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|40 citations·2011
Promyogenic function of Integrin/FAK signaling is mediated by Cdo, Cdc42 and MyoD
Jiwon Han, Hye-Jin Lee, Gyu‐Un Bae, Jong‐Sun Kang
SJR Q2Cellular Signalling
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|38 citations·2020
Indoprofen prevents muscle wasting in aged mice through activation of PDK1/AKT pathway
Hyebeen Kim, Sung Chun Cho, Hyeon‐Ju Jeong, Hye‐Young Lee, Myong‐Ho Jeong, Jung‐Hoon Pyun, Dongryeol Ryu, Minseok Kim, Young‐Sam Lee, Young‐Sam Lee, Minseok S. Kim, Sang Chul Park
SJR Q1Journal of Cachexia Sarcopenia and MuscleOA

BACKGROUND: Muscle wasting, resulting from aging or pathological conditions, leads to reduced quality of life, increased morbidity, and increased mortality. Much research effort has been focused on the development of exercise mimetics to prevent muscle atrophy and weakness. In this study, we identified indoprofen from a screen for peroxisome proliferator-activated receptor γ coactivator α (PGC-1α) inducers and report its potential as a drug for muscle wasting. METHODS: The effects of indoprofen

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|37 citations·2012
TGF-β-activated Kinase 1 (TAK1) and Apoptosis Signal-regulating Kinase 1 (ASK1) Interact with the Promyogenic Receptor Cdo to Promote Myogenic Differentiation via Activation of p38MAPK Pathway
Phong Tran, Seok‐Man Ho, Bok-Geon Kim, Tuan Anh Vuong, Young-Eun Leem, Gyu‐Un Bae, Jong‐Sun Kang
SJR Q1Journal of Biological ChemistryOA

p38MAPK plays an essential role in the transition of myoblasts to differentiated myotubes through the activation of MyoD family transcription factors. A promyogenic cell surface molecule, Cdo, promotes myogenic differentiation mainly through activation of the p38MAPK pathway. Two MAP3Ks, TAK1 and ASK1, can activate p38MAPK via MKK6 in various cell systems. Moreover TAK1 has been shown to promote myogenic differentiation via p38MAPK activation. In this study, we hypothesized that TAK1 and ASK1 mi

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|36 citations·2019
PRMT1 suppresses ATF4-mediated endoplasmic reticulum response in cardiomyocytes
Myong‐Ho Jeong, Hyeon‐Ju Jeong, Byeong-Yun Ahn, Jung‐Hoon Pyun, Ilmin Kwon, Hana Cho, Jong‐Sun Kang
SJR Q1Cell Death and DiseaseOA

Endoplasmic reticulum (ER) stress signaling plays a critical role in the control of cell survival or death. Persistent ER stress activates proapoptotic pathway involving the ATF4/CHOP axis. Although accumulating evidences support its important contribution to cardiovascular diseases, but its mechanism is not well characterized. Here, we demonstrate a critical role for PRMT1 in the control of ER stress in cardiomyocytes. The inhibition of PRMT1 augments tunicamycin (TN)-triggered ER stress respon

Cell BiologyBiochemistry, Genetics and Molecular Biology
15
Article|35 citations·2021
Inducible Prmt1 ablation in adult vascular smooth muscle leads to contractile dysfunction and aortic dissection
Jung‐Hoon Pyun, Byeong-Yun Ahn, Tuan Anh Vuong, Su Woo Kim, Yunju Jo, Jae‐Hyung Jeon, Seung Ho Baek, Jaewon Kim, Sungsu Park, Gyu‐Un Bae, Jun‐Hyuk Choi, Jae‐Ryong Kim
SJR Q1Experimental & Molecular MedicineOA

Vascular smooth muscle cells (VSMCs) have remarkable plasticity in response to diverse environmental cues. Although these cells are versatile, chronic stress can trigger VSMC dysfunction, which ultimately leads to vascular diseases such as aortic aneurysm and atherosclerosis. Protein arginine methyltransferase 1 (Prmt1) is a major enzyme catalyzing asymmetric arginine dimethylation of proteins that are sources of asymmetric dimethylarginine (ADMA), an endogenous inhibitor of nitric oxide synthas

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyCellular and Molecular NeuroscienceCell BiologyBiomedical EngineeringOncologyGenetics

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