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Hae-cheol Park

Korea University · 生化学・遺伝学・分子生物学

研究室紹介

Professor Hae-cheol Park's research lab focuses on the developmental and regenerative mechanisms of the vertebrate nervous system, with a central emphasis on neural stem cells, glial cell fate specification, and the molecular regulation of neurogenesis and gliogenesis. Using zebrafish as a model organism, the lab investigates how signaling pathways such as Notch and Hedgehog orchestrate the generation of diverse neural cell types—including motoneurons, interneurons, and oligodendrocytes—through spatially and temporally controlled transcriptional programs. The lab also explores the role of cell cycle regulators like Cdkn1c in coordinating cell cycle exit and differentiation, and examines the maintenance and function of radial glia as lifelong neural stem cells in the spinal cord. These studies provide fundamental insights into neural development, myelination, and the potential for endogenous repair in neurological diseases.

neural stem cellsglial fate specificationNotch signalingzombie fishradial glia

Research Overview

Papers
237
Total Citations
5,380
Papers (5y)
40
Primary Field
生化学・遺伝学・分子生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
40total
2022
2023
2024
2025
2026
Citations per year (5y)
217total
20222023202420252026

Selected Papers

15
1
Article|312 citations·2002
olig2 Is Required for Zebrafish Primary Motor Neuron and Oligodendrocyte Development
Hae‐Chul Park, Amit P. Mehta, Joanna Richardson, Bruce Appel
SJR Q2Developmental Biology
Developmental NeuroscienceNeuroscience
2
Article|214 citations·2003
Delta-Notch signaling regulates oligodendrocyte specification
Hae‐Chul Park, Bruce Appel
SJR Q1Development

Oligodendrocytes, the myelinating cell type of the central nervous system, arise from a ventral population of precursors that also produces motoneurons. Although the mechanisms that specify motoneuron development are well described, the mechanisms that generate oligodendrocytes from the same precursor population are largely unknown. By analysing mutant zebrafish embryos, we found that Delta-Notch signaling is required for spinal cord oligodendrocyte specification. Using a transgenic, conditional

Cell BiologyBiochemistry, Genetics and Molecular Biology
3
Article|182 citations·2004
Spatial and temporal regulation of ventral spinal cord precursor specification by Hedgehog signaling
Hae‐Chul Park, Jimann Shin, Bruce Appel
SJR Q1Development

Graded Hedgehog (Hh) signaling patterns the spinal cord dorsoventral axis by inducing and positioning distinct precursor domains, each of which gives rise to a different type of neuron. These domains also generate glial cells, but the full range of cell types that any one precursor population produces and the mechanisms that diversify cell fate are unknown. By fate mapping and clonal analysis in zebrafish, we show that individual ventral precursor cells that express olig2 can form motoneurons, i

Developmental NeuroscienceNeuroscience
4
Article|129 citations·2009
Visualization of myelination in GFP‐transgenic zebrafish
Seung‐Hyun Jung, Suhyun Kim, Ah‐Young Chung, Hyun–Taek Kim, Juhoon So, Jae-Ho Ryu, Hae‐Chul Park, Cheol‐Hee Kim
SJR Q2Developmental DynamicsOA

The insulation of axons in the vertebrate nervous system by myelin is essential for efficient axonal conduction. Myelination disruption and remyelination failure can cause human diseases, such as multiple sclerosis and hereditary myelin diseases. However, despite progress in understanding myelination regulation, many important questions remain unanswered. To investigate the mechanisms underlying myelination in vivo, we generated transgenic zebrafish expressing enhanced green fluorescent protein

Developmental NeuroscienceNeuroscience
5
Article|117 citations·2005
Oligodendrocyte Specification in Zebrafish Requires Notch-Regulated Cyclin-Dependent Kinase Inhibitor Function
Hae‐Chul Park, Janene Boyce, Jimann Shin, Bruce Appel
SJR Q1Journal of NeuroscienceOA

Cyclin-dependent kinase inhibitors (Cdkis) influence both cell-cycle progression and differentiation of neural cells. However, the precise roles of Cdkis in coordinating formation of neurons and glia and the mechanisms that regulate expression of genes that encode Cdkis in the vertebrate CNS remain unknown. Here, we report that, in zebrafish, expression of the Cdki gene cyclin-dependent kinase inhibitor 1c (cdkn1c), a p57 homolog, is negatively regulated by Delta-Notch signaling and that Cdkn1c

Cancer ResearchBiochemistry, Genetics and Molecular Biology
6
Article|103 citations·2007
An olig2 reporter gene marks oligodendrocyte precursors in the postembryonic spinal cord of zebrafish
Hae‐Chul Park, Jimann Shin, Randolph K. Roberts, Bruce Appel
SJR Q2Developmental DynamicsOA

Continuous production of new neurons and glia in adult mammals occurs within specialized proliferation zones of the forebrain. Neural cell proliferation and neurogenesis is more widespread in adult amphibians, reptiles, and fish but the identity of neural stem cell populations in these organisms has not been fully described. We investigated expression of a reporter gene driven by olig2 regulatory DNA at postembryonic stages in zebrafish. We show that olig2 expression marks a discrete population

Developmental NeuroscienceNeuroscience
7
Article|101 citations·2008
Notch‐regulated oligodendrocyte specification from radial glia in the spinal cord of zebrafish embryos
Ho Kim, Jimann Shin, Suhyun Kim, Justin Poling, Hae‐Chul Park, Bruce Appel
SJR Q2Developmental DynamicsOA

During vertebrate neural development, many dividing neuroepithelial precursors adopt features of radial glia, which are now known to also serve as neural precursors. In mammals, most radial glia do not persist past early postnatal stages, whereas zebrafish maintain large numbers of radial glia into adulthood. The mechanisms that maintain and specify radial glia for different fates are still poorly understood. We investigated formation of radial glia in the spinal cord of zebrafish and the role o

Developmental NeuroscienceNeuroscience
8
Article|92 citations·2000
Structural comparison of zebrafish Elav/Hu and their differential expressions during neurogenesis
Hae‐Chul Park, Sung-Kook Hong, Hyung-Seok Kim, Seok-Hyung Kim, Eun-Ja Yoon, Cheol‐Hee Kim, Naomasa Miki, Tae-Lin Huh
SJR Q2Neuroscience Letters
Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|77 citations·2012
A manganese superoxide dismutase (MnSOD) from Ruditapes philippinarum: Comparative structural- and expressional-analysis with copper/zinc superoxide dismutase (Cu/ZnSOD) and biochemical analysis of its antioxidant activities
Navaneethaiyer Umasuthan, S.D.N.K. Bathige, Kasthuri Saranya Revathy, Youngdeuk Lee, Ilson Whang, Cheol Young Choi, Hae‐Chul Park, Jehee Lee
SJR Q1Fish & Shellfish Immunology
Health, Toxicology and MutagenesisEnvironmental Science
10
Article|63 citations·2013
Generation of Demyelination Models by Targeted Ablation of Oligodendrocytes in the Zebrafish CNS
Ah-Young Chung, Pan-Soo Kim, Suhyun Kim, Eun‐Mi Kim, Do‐Hyun Kim, Inyoung Jeong, Hwan-Ki Kim, Jae-Ho Ryu, Cheol‐Hee Kim, June Choi, Jin‐Ho Seo, Hae‐Chul Park
SJR Q1Molecules and CellsOA

Demyelination is the pathological process by which myelin sheaths are lost from around axons, and is usually caused by a direct insult targeted at the oligodendrocytes in the vertebrate central nervous system (CNS). A demyelinated CNS is usually remyelinated by a population of oligodendrocyte progenitor cells, which are widely distributed throughout the adult CNS. However, myelin disruption and remyelination failure affect the normal function of the nervous system, causing human diseases such as

Cell BiologyBiochemistry, Genetics and Molecular Biology
11
Article|49 citations·2018
mRNA expression and metabolic regulation of npy and agrp1/2 in the zebrafish brain
Inyoung Jeong, Eun‐Mi Kim, Suhyun Kim, Hwan-Ki Kim, Dong-Won Lee, Jae Young Seong, Hae‐Chul Park
SJR Q2Neuroscience Letters
Endocrine and Autonomic SystemsNeuroscience
12
Article|47 citations·2012
Interferon regulatory factors 4 and 8 in rock bream, Oplegnathus fasciatus: Structural and expressional evidence for their antimicrobial role in teleosts
S.D.N.K. Bathige, Ilson Whang, Navaneethaiyer Umasuthan, Bong-Soo Lim, Myoung-Ae Park, Eun‐Mi Kim, Hae‐Chul Park, Jehee Lee
SJR Q1Fish & Shellfish Immunology
ImmunologyImmunology and Microbiology
13
Article|38 citations·2012
A novel acute phase reactant, serum amyloid A-like 1, from Oplegnathus fasciatus: Genomic and molecular characterization and transcriptional expression analysis
Kasthuri Saranya Revathy, Navaneethaiyer Umasuthan, Ilson Whang, Youngdeuk Lee, Sukkyoung Lee, Myung‐Joo Oh, Sung-Ju Jung, Cheol Young Choi, Choul-Ji Park, Hae‐Chul Park, Jehee Lee
SJR Q2Developmental & Comparative Immunology
Infectious DiseasesMedicine
14
Article|37 citations·2019
Myelin degeneration induced by mutant superoxide dismutase 1 accumulation promotes amyotrophic lateral sclerosis
Suhyun Kim, Ah‐Young Chung, Ji E. Na, Se Jeong Lee, Sang Hoon Jeong, Eun‐Mi Kim, Woong Sun, Im Joo Rhyu, Hae‐Chul Park
SJR Q1Glia

Abstract Myelin is a specialized membrane that wraps around nerve fibers and is essential for normal axonal conduction in neurons. In the central nervous system, oligodendrocytes are responsible for myelin formation. Recent studies have reported pathological abnormalities in oligodendrocytes in human patients with amyotrophic lateral sclerosis (ALS) and a mouse model of ALS expressing the G93A mutation of the human superoxide dismutase 1 (mtSOD1). However, it is unclear whether oligodendrocyte p

NeurologyMedicine
15
Article|36 citations·2020
A nonsense variant in NME5 causes human primary ciliary dyskinesia with radial spoke defects
Eun Hye Cho, Hee Jae Huh, Inyoung Jeong, Nam Yong Lee, Won‐Jung Koh, Hae‐Chul Park, Chang‐Seok Ki
SJR Q2Clinical Genetics

Primary ciliary dyskinesia (PCD) is a genetically heterogeneous disorder characterized by defects in the function or structure of motitle cilia. In most cases, causative variants result in axonemal dynein arm anomalies, however, PCD due to radial spoke (RS) and central pair (CP) of microtubules has been rarely reported. To identify the molecular basis of PCD characterized by RS/CP defects, we performed whole exome sequencing in PCD patients with RS/CP defects. We identified a homozygous nonsense

GeneticsBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyCell BiologyEcology, Evolution, Behavior and SystematicsDevelopmental NeuroscienceGeneticsSensory Systems

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