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Hyun-Mo Ryoo

Seoul National University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Hyun-Mo Ryoo's research lab specializes in molecular mechanisms underlying bone formation and heterotopic ossification, with a focus on the roles of transcription factors such as Dlx5 and Runx2 in osteoblast differentiation. The lab investigates signaling pathways initiated by bone morphogenetic proteins (BMPs), particularly BMP-2, and their downstream targets in regulating osteogenic gene expression. A central theme is understanding how aberrant BMP signaling, as seen in fibrodysplasia ossificans progressiva (FOP), leads to pathological bone formation. The lab employs molecular and cellular approaches in model systems like C2C12 myoblasts to dissect transcriptional networks controlling bone development and disease.

osteoblast differentiationBMP signalingRunx2Dlx5heterotopic ossification

Research Overview

Papers
225
Total Citations
10,796
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
2021
2022
2023
2024
2025
Citations per year (5y)
277total
20212022202320242025

Selected Papers

15
1
Article|413 citations·2003
BMP-2-induced Runx2 Expression Is Mediated by Dlx5, and TGF-β1 Opposes the BMP-2-induced Osteoblast Differentiation by Suppression of Dlx5 Expression
Mi‐Hye Lee, Youn Jeong Kim, Hyun‐Jung Kim, Hyun-Dong Park, A H Kang, Hee‐Moon Kyung, Jae-Hyun Sung, John M. Wozney, Hyun‐Jung Kim, Hyun‐Mo Ryoo
SJR Q1Journal of Biological ChemistryOA

Intramuscular injection of BMP-2 induces ectopic bone formation in vivo. Similarly, BMP-2 treatment blocks myogenic differentiation and induces osteoblastic transdifferentiation of premyoblastic C2C12 cells. Previous reports suggested that BMP-2-stimulated Runx2 expression could play a pivotal role in transdifferentiation. However, increased Runx2 expression by TGF-β1 did not support osteoblast differentiation in vitro. These results indicate that the induction of Runx2 is not sufficient to expl

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|391 citations·2003
BMP-2-induced Osterix expression is mediated by Dlx5 but is independent of Runx2
Mi‐Hye Lee, Tae‐Geon Kwon, Hyo‐Sang Park, John M. Wozney, Hyun‐Mo Ryoo
SJR Q2Biochemical and Biophysical Research Communications
Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Review|376 citations·2005
Critical molecular switches involved in BMP-2-induced osteogenic differentiation of mesenchymal cells
Hyun‐Mo Ryoo, Mi‐Hye Lee, Youn Jeong Kim
SJR Q2Gene
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|275 citations·1997
Stage-Specific Expression of Dlx-5 during Osteoblast Differentiation: Involvement in Regulation of Osteocalcin Gene Expression
Hyun‐Mo Ryoo, Heidi Hoffmann, Tim L. Beumer, Baruch Frenkel, Dwight A. Towler, Gary S. Stein, Janet L. Stein, André J. van Wijnen, Jane B. Lian
Molecular EndocrinologyOA

Two homeotic genes, Dlx and Msx, appear to regulate development of mineralized tissues, including bone, cartilage, and tooth. Expression of Msx-1 and Msx-2 has been studied during development of the osteoblast phenotype, but the role of Dlx in this context and in the regulation of bone-expressed genes is unknown. We used targeted differential display to isolate homeotic genes of the Dlx family that are expressed at defined stages of osteoblast differentiation. These studies were carried out with

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|254 citations·1999
Transient upregulation of CBFA1 in response to bone morphogenetic protein-2 and transforming growth factor ?1 in C2C12 myogenic cells coincides with suppression of the myogenic phenotype but is not sufficient for osteoblast differentiation
Mi‐Hye Lee, Amjad Javed, Hyun Jung Kim, Hong-In Shin, Soraya Gutiérrez, Je‐Yong Choi, Vicky Rosen, Janet L. Stein, André J. van Wijnen, Gary S. Stein, Jane B. Lian, Hyun‐Mo Ryoo
SJR Q2Journal of Cellular Biochemistry

The bone morphogenetic protein (BMP)-2 is a potent osteoinductive signal, inducing bone formation in vivo and osteoblast differentiation from non-osseous cells in vitro. The runt domain-related protein Cbfa1/PEBP2alphaA/AML-3 is a critical component of bone formation in vivo and transcriptional regulator of osteoblast differentiation. To investigate the relationship between the extracellular BMP-2 signal, Cbfa1, and osteogenesis, we examined expression of Cbfa1 and osteoblastic genes during the

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|239 citations·2002
The Protein Kinase C Pathway Plays a Central Role in the Fibroblast Growth Factor-stimulated Expression and Transactivation Activity of Runx2
Hyun‐Jung Kim, Jung Hwan Kim, Suk‐Chul Bae, Je‐Yong Choi, Hyun‐Jung Kim, Hyun‐Mo Ryoo
SJR Q1Journal of Biological ChemistryOA

Fibroblast growth factor (FGF)/FGF receptor (FGFR) signaling induces the expression of Runx2, a key transcription factor in osteoblast differentiation, but little is known about the molecular signaling mechanisms that mediate this. Here we examined the role of the protein kinase C (PKC) pathway in regulating Runx2 gene expression and its transactivation function. Treatment with FGF2 or FGF4, or transfection with a vector expressing a mutant FGFR2 that is constitutively activated in the absence o

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|202 citations·2004
Bone Morphogenetic Protein-2-induced Alkaline Phosphatase Expression Is Stimulated by Dlx5 and Repressed by Msx2
Youn Jeong Kim, Mi‐Hye Lee, John M. Wozney, Je‐Yoel Cho, Hyun‐Mo Ryoo
SJR Q1Journal of Biological ChemistryOA

Alkaline phosphatase (ALP) is a widely accepted bone marker. Its expression is stimulated by bone morphogenetic protein (BMP)-2 treatment, the activation of BMP receptors and R-Smads, and the expression of Dlx5 and Runx2. However, how BMP-2 induces ALP expression is not clearly understood. We dissected the murine ALP promoter and found within it a Dlx5-binding cis-acting element by electrophoretic mobility shift assays and site-directed mutagenesis of the element. Dlx5 and the product of its tar

Endocrinology, Diabetes and MetabolismMedicine
8
Article|197 citations·2005
Dlx5 Specifically Regulates Runx2 Type II Expression by Binding to Homeodomain-response Elements in the Runx2 Distal Promoter
Mi‐Hye Lee, Youn Jeong Kim, Won‐Joon Yoon, Jee‐In Kim, Byung‐Gyu Kim, Yoo‐Seok Hwang, John M. Wozney, Xin‐Zi Chi, Suk‐Chul Bae, Kang‐Young Choi, Je‐Yoel Cho, Je‐Yong Choi
SJR Q1Journal of Biological ChemistryOA

Two major isoforms of the Runx2 gene are expressed by alternative promoter usage: Runx2 type I (Runx2-I) is derived from the proximal promoter (P2), and Runx2 type II (Runx2-II) is produced by the distal promoter (P1). Our previous results indicate that Dlx5 mediates BMP-2-induced Runx2 expression and osteoblast differentiation (Lee, M.-H., Kim, Y-J., Kim, H-J., Park, H-D., Kang, A-R., Kyung, H.-M., Sung, J-H., Wozney, J. M., Kim, H-J., and Ryoo, H-M. (2003) J. Biol. Chem. 278, 34387-34394). How

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|160 citations·2010
BMP2-activated Erk/MAP Kinase Stabilizes Runx2 by Increasing p300 Levels and Histone Acetyltransferase Activity
Ji Hae Jun, Won‐Joon Yoon, Sang‐Beom Seo, Kyung Mi Woo, Gwan-Shik Kim, Hyun‐Mo Ryoo, Jeong‐Hwa Baek
SJR Q1Journal of Biological ChemistryOA

Runx2 is a critical transcription factor for osteoblast differentiation. Regulation of Runx2 expression levels and transcriptional activity is important for bone morphogenetic protein (BMP)-induced osteoblast differentiation. Previous studies have shown that extracellular signal-regulated kinase (Erk) activation enhances the transcriptional activity of Runx2 and that BMP-induced Runx2 acetylation increases Runx2 stability and transcriptional activity. Because BMP signaling induces Erk activation

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|123 citations·2009
FGF2-activated ERK Mitogen-activated Protein Kinase Enhances Runx2 Acetylation and Stabilization
Ok-Jin Park, Hyun‐Jung Kim, Kyung Mi Woo, Jeong‐Hwa Baek, Hyun‐Mo Ryoo
SJR Q1Journal of Biological ChemistryOA

Runx2 is a key transcription factor regulating osteoblast differentiation and skeletal morphogenesis, and FGF2 is one of the most important regulators of skeletal development. The importance of the ERK mitogen-activated protein (MAP) kinase pathway in cranial suture development was demonstrated by the findings that the inhibition of FGF/FGF receptor (FGFR) signaling by a MEK blocker prevents the premature suture closure caused by an Fgfr2 mutation in mice. We previously demonstrated that ERK act

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|112 citations·2010
Molecular Consequences of the ACVR1R206H Mutation of Fibrodysplasia Ossificans Progressiva
Gin-Ah Song, Hyun‐Jung Kim, Kyung Mi Woo, Jeong‐Hwa Baek, Gwan-Shik Kim, Jin‐Young Choi, Hyun‐Mo Ryoo
SJR Q1Journal of Biological ChemistryOA

Fibrodysplasia ossificans progressiva (FOP), a rare genetic and catastrophic disorder characterized by progressive heterotopic ossification, is caused by a point mutation, c.617G>A; p.R206H, in the activin A receptor type 1 (ACVR1) gene, one of the bone morphogenetic protein type I receptors (BMPR-Is). Although altered BMP signaling has been suggested to explain the pathogenesis, the molecular consequences of this mutation are still elusive. Here we studied the impact of ACVR1 R206H mutation on

RheumatologyMedicine
12
Article|108 citations·2005
Runx2 regulates FGF2‐induced Bmp2 expression during cranial bone development
Kang‐Young Choi, Hyun-Jung Kim, Mi‐Hye Lee, Tae‐Geon Kwon, Hyun‐Duck Nah, Tatsuya Furuichi, Toshihisa Komori, Soon‐Hyeun Nam, Young‐Jin Kim, Hyun-Jung Kim, Hyun‐Mo Ryoo
SJR Q2Developmental DynamicsOA

Calvarial bone is formed by the intramembranous bone-forming process, which involves many signaling molecules. The constitutive activation of the fibroblast growth factor (FGF) signaling pathway accelerates osteoblast differentiation and results in premature cranial suture closure. Bone morphogenetic protein (BMP) signaling pathways, which involve the downstream transcription factors Dlx5 and Msx2, are also involved in the bone-forming processes. However, the relationships between these two main

GeneticsBiochemistry, Genetics and Molecular Biology
13
Article|86 citations·2001
Differential Expression Patterns of Runx2 Isoforms in Cranial Suture Morphogenesis
Mi‐Hyun Park, Hong‐In Shin, Je‐Yong Choi, Soon‐Hyeun Nam, Young‐Jin Kim, Hyun Jung Kim, Hyun‐Mo Ryoo
SJR Q1Journal of Bone and Mineral ResearchOA

Runx2 (previously known as Cbfal/Pebp2alphaA/AML3), a key transcription factor in osteoblast differentiation, has at least two different isoforms using alternative promoters, which suggests that the isoforms might be expressed differentially. Haploinsufficiency of the Runx2 gene is associated with cleidocranial dysplasia (CCD), the main phenotype of which is inadequate development of calvaria. In spite of the biological relevance, Runx2 gene expression patterns in developing calvaria has not bee

GeneticsBiochemistry, Genetics and Molecular Biology
14
Article|74 citations·2003
Erk pathway and activator protein 1 play crucial roles in FGF2‐stimulated premature cranial suture closure
Hyun‐Jung Kim, Mi‐Hye Lee, Hyun‐Sik Park, Mi‐Hyun Park, Sang‐Won Lee, Shin‐Yoon Kim, Je‐Yong Choi, Hong‐In Shin, Hyun‐Jung Kim, Hyun‐Mo Ryoo
SJR Q2Developmental DynamicsOA

Cranial sutures are an important growth center of the cranial bones, and the suture space must be maintained to permit the cranial adjustments needed to accommodate brain growth. Craniosynostosis, characterized by premature suture closure, mainly results from mutations that generate constitutively active fibroblast growth factor (FGF) receptors. FGF signaling, thus, is responsible for the pathogenesis of craniosynostosis. Even though FGF activates many different signaling pathways, the one invol

GeneticsBiochemistry, Genetics and Molecular Biology
15
Article|71 citations·2022
ROS-induced PADI2 downregulation accelerates cellular senescence via the stimulation of SASP production and NFκB activation
Hyun-Jung Kim, Woo Jin Kim, Hye‐Rim Shin, Heein Yoon, Jae-I Moon, Eunji Lee, Jin‐Muk Lim, Young‐Dan Cho, Mi‐Hye Lee, Hong‐Gee Kim, Hyun‐Mo Ryoo
SJR Q1Cellular and Molecular Life SciencesOA

Abstract Cellular senescence is closely related to tissue aging including bone. Bone homeostasis is maintained by the tight balance between bone-forming osteoblasts and bone-resorbing osteoclasts, but it undergoes deregulation with age, causing age-associated osteoporosis, a main cause of which is osteoblast dysfunction. Oxidative stress caused by the accumulation of reactive oxygen species (ROS) in bone tissues with aging can accelerate osteoblast senescence and dysfunction. However, the regula

PhysiologyMedicine

Research Areas

Molecular BiologyGeneticsBiomedical EngineeringRheumatologyCancer ResearchBiomaterials

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