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Hyeon Son

Hanyang University · Neuroscience

About the Lab

Professor Hyeon Son's research lab focuses on the cellular and molecular mechanisms underlying synaptic plasticity, neurogenesis, and stress-related psychiatric disorders, particularly depression. The lab investigates key signaling pathways—such as cGMP, HDAC5/MEF2, neuritin, and TRPV1—that regulate neuronal structure, function, and resilience in the hippocampus. Using rodent models and ex vivo brain slice preparations, the lab explores how antidepressants and rapid-acting agents like ketamine modulate synaptic strength and neural circuit adaptation. A central theme is identifying intracellular signaling cascades that link neuronal activity to long-term changes in brain function and behavior.

synaptic plasticityneurogenesisantidepressant mechanismsHDAC5 signalinghippocampal circuitry

Research Overview

Papers
109
Total Citations
7,255
Papers (5y)
11
Primary Field
Neuroscience

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
11total
2022
2023
2024
2025
2026
Citations per year (5y)
32total
20222023202420252026

Selected Papers

15
1
Article|435 citations·1996
Long-Term Potentiation Is Reduced in Mice That Are Doubly Mutant in Endothelial and Neuronal Nitric Oxide Synthase
Hyeon Son, Robert D. Hawkins, Kelsey C. Martin, Michael Kiebler, Paul L. Huang, Mark C. Fishman, Eric R. Kandel
SJR Q1CellOA
PhysiologyMedicine
2
Article|165 citations·2008
Valproic acid promotes neuronal differentiation by induction of proneural factors in association with H4 acetylation
In Tag Yu, Jin‐Yong Park, Sung Hyun Kim, Jeong-Sik Lee, Yong-Seok Kim, Hyeon Son
SJR Q1Neuropharmacology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|142 citations·2004
Dexamethasone inhibits proliferation of adult hippocampal neurogenesis in vivo and in vitro
Jong Bin Kim, Jae Yeol Ju, Ju Hee Kim, Think‐You Kim, Byung‐Hwan Yang, Yong‐Sung Lee, Hyeon Son
SJR Q2Brain Research
Developmental NeuroscienceNeuroscience
4
Article|138 citations·2003
Lithium enhances long‐term potentiation independently of hippocampal neurogenesis in the rat dentate gyrus
Hyeon Son, In Tag Yu, Se‐Jin Hwang, Jin Seok Kim, Sang‐Hum Lee, Yong‐Sung Lee, Bong‐Kiun Kaang
SJR Q1Journal of NeurochemistryOA

We measured the temporal and spatial profiles of neural precursor cells, hippocampal long-term potentiation (LTP), and signaling molecules in neurogenesis-induced adult rats. Chronic lithium treatment produced a significant 54% and 40% increase in the numbers of bromodeoxyuridine [BrdU(+)] cells after 12 h and 28 days, respectively, after treatment completion in the dentate gyrus (DG). Both LTP obtained from slices perfused with artificial cerebrospinal fluid (ACSF-LTP) and LTP recorded in the p

Developmental NeuroscienceNeuroscience
5
Article|129 citations·1998
The Specific Role of cGMP in Hippocampal LTP
Hyeon Son, Yun-Fei Lü, Min Zhuo, Ottavio Arancio, Eric R. Kandel, Robert D. Hawkins
SJR Q2Learning & MemoryOA

Previous results have suggested that cGMP is involved in hippocampal long-term potentiation (LTP), perhaps as the presynaptic effector of a retrograde messenger. However, other studies have failed to replicate some of those results, making the role of cGMP uncertain. We therefore reexamined this question and identified several variables that can affect the contribution of cGMP. First, brief perfusion with 8-Br-cGMP before weak tetanic stimulation produced long-lasting potentiation in the CA1 reg

Cellular and Molecular NeuroscienceNeuroscience
6
Article|104 citations·2004
Differential effects of corticosterone and dexamethasone on hippocampal neurogenesis in vitro
In Tag Yu, Sang‐Hun Lee, Yong-Sung Lee, Hyeon Son
SJR Q2Biochemical and Biophysical Research Communications
Developmental NeuroscienceNeuroscience
7
Article|103 citations·2007
Vascular endothelial growth factor (VEGF) signaling regulates hippocampal neurons by elevation of intracellular calcium and activation of calcium/calmodulin protein kinase II and mammalian target of rapamycin
Byung Woo Kim, Minee L. Choi, Yong-Seok Kim, Hyungju Park, Hye‐Ryeon Lee, Chae‐Ok Yun, Eun Joo Kim, June-Seek Choi, Sunoh Kim, Hyewon Rhim, Bong‐Kiun Kaang, Hyeon Son
SJR Q2Cellular SignallingOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|100 citations·2012
Neuritin produces antidepressant actions and blocks the neuronal and behavioral deficits caused by chronic stress
Hyeon Son, Mounira Banasr, Miyeon Choi, Seung Yeon Chae, Pawel Licznerski, Boyoung Lee, Bhavya Voleti, Nanxin Li, Ashley E. Lepack, Neil M. Fournier, Ka Rim Lee, In Young Lee
SJR Q1Proceedings of the National Academy of SciencesOA

Decreased neuronal dendrite branching and plasticity of the hippocampus, a limbic structure implicated in mood disorders, is thought to contribute to the symptoms of depression. However, the mechanisms underlying this effect, as well as the actions of antidepressant treatment, remain poorly characterized. Here, we show that hippocampal expression of neuritin, an activity-dependent gene that regulates neuronal plasticity, is decreased by chronic unpredictable stress (CUS) and that antidepressant

Cellular and Molecular NeuroscienceNeuroscience
9
Article|76 citations·2015
Ketamine produces antidepressant-like effects through phosphorylation-dependent nuclear export of histone deacetylase 5 (HDAC5) in rats
Miyeon Choi, Seung Hoon Lee, Sung Eun Wang, Seung Yeon Ko, Mihee Song, June-Seek Choi, Yong-Seok Kim, Ronald S. Duman, Hyeon Son
SJR Q1Proceedings of the National Academy of SciencesOA

Ketamine produces rapid antidepressant-like effects in animal assays for depression, although the molecular mechanisms underlying these behavioral actions remain incomplete. Here, we demonstrate that ketamine rapidly stimulates histone deacetylase 5 (HDAC5) phosphorylation and nuclear export in rat hippocampal neurons through calcium/calmodulin kinase II- and protein kinase D-dependent pathways. Consequently, ketamine enhanced the transcriptional activity of myocyte enhancer factor 2 (MEF2), whi

Biological PsychiatryNeuroscience
10
Article|60 citations·2017
TRPV1 Regulates Stress Responses through HDAC2
Sung Eun Wang, Seung Yeon Ko, Sungsin Jo, Miyeon Choi, Seung Hoon Lee, Hye-Ryeong Jo, Jee Young Seo, Sang Hoon Lee, Yong-Seok Kim, Sung Jun Jung, Hyeon Son
SJR Q1Cell ReportsOA

Stress causes changes in neurotransmission in the brain, thereby influencing stress-induced behaviors. However, it is unclear how neurotransmission systems orchestrate stress responses at the molecular and cellular levels. Transient receptor potential vanilloid 1 (TRPV1), a non-selective cation channel involved mainly in pain sensation, affects mood and neuroplasticity in the brain, where its role is poorly understood. Here, we show that Trpv1-deficient (Trpv1−/−) mice are more stress resilient

Sensory SystemsNeuroscience
11
Article|44 citations·2017
Ketamine induces brain-derived neurotrophic factor expression via phosphorylation of histone deacetylase 5 in rats
Miyeon Choi, Seung Hoon Lee, Min Hyeop Park, Yong-Seok Kim, Hyeon Son
SJR Q2Biochemical and Biophysical Research Communications
Biological PsychiatryNeuroscience
12
Article|38 citations·1996
The translocation and involvement of protein kinase C in mossy fiber-CA3 long-term potentiation in hippocampus of the rat brain
Hyeon Son, Vergine Madelian, David O Carpenter
SJR Q2Brain ResearchOA

The detailed mechanisms underlying long-term potentiation (LTP) are not known. In hippocampal CA1, translocation of protein kinase C (PKC) activity from cytosol to membrane and subsequent phosphorylation of growth associated protein (GAP)-43 have been demonstrated to be critical events for the maintenance phase of LTP. LTP in mossy fiber (MF)-CA3 pathway and the Schaffer collateral/commissural (SC)-CA1 pathway differ in a number of ways: SC-CA1 LTP depends on NMDA receptors while MF-CA3 LTP does

Cellular and Molecular NeuroscienceNeuroscience
13
Article|34 citations·2016
Hippocampal VEGF is necessary for antidepressant-like behaviors but not sufficient for antidepressant-like effects of ketamine in rats
Miyeon Choi, Seung Hoon Lee, Ho Lee Chang, Hyeon Son
SJR Q1Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease
Developmental NeuroscienceNeuroscience
14
Article|34 citations·2002
Enhancement of rat hippocampal long-term potentiation by 17β-estradiol involves mitogen-activated protein kinase-dependent and -independent components
Jin Seok Kim, Hye Young Kim, Jin Hyuk Kim, Hong Kee Shin, Sang Hun Lee, Yong Sung Lee, Hyeon Son
SJR Q2Neuroscience Letters
Cellular and Molecular NeuroscienceNeuroscience
15
Article|33 citations·1996
Protein kinase C activation is necessary but not sufficient for induction of long-term potentiation at the synapse of mossy fiber-CA3 in the rat hippocampus
Hyeon Son, David O. Carpenter
SJR Q2Neuroscience
Cellular and Molecular NeuroscienceNeuroscience

Research Areas

Cellular and Molecular NeuroscienceDevelopmental NeuroscienceMolecular BiologyBiological PsychiatrySensory SystemsHematology

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