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Jae‐Ick Kim

Ulsan National Institute of Science and Technology · Neuroscience

About the Lab

Professor Jae-Ick Kim's research lab focuses on the cellular and molecular mechanisms underlying neural circuit function and dysfunction, with a central emphasis on synaptic transmission, neurotransmitter systems, and neuronal plasticity. Key research directions include the role of post-translational modifications—such as O-GlcNAcylation and ubiquitination—in neuronal survival and synaptic regulation, the novel GABA synthesis pathway in midbrain dopamine neurons, and the direct reprogramming of somatic cells into functional motor neurons for regenerative medicine. The lab integrates molecular neuroscience, behavioral analysis, and translational approaches to understand and treat neurological disorders including Parkinson’s disease, epilepsy, and spinal cord injury.

synaptic plasticitydopamine neuronsGABAergic inhibitionneurodegenerative diseasedirect cell reprogramming

Research Overview

Papers
85
Total Citations
2,818
Papers (5y)
31
Primary Field
Neuroscience

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
31total
2022
2023
2024
2025
2026
Citations per year (5y)
144total
20222023202420252026

Selected Papers

15
1
Article|719 citations·2012
Autistic-like social behaviour in Shank2-mutant mice improved by restoring NMDA receptor function
Hyejung Won, Hye‐Ryeon Lee, Heon Yung Gee, Won Mah, Jae‐Ick Kim, Jiseok Lee, Seungmin Ha, Changuk Chung, Eun Suk Jung, Yi Sul Cho, Sae-Geun Park, Jungsoo Lee
SJR Q1NatureOA
GeneticsBiochemistry, Genetics and Molecular Biology
2
Article|415 citations·2008
Synaptic Protein Degradation Underlies Destabilization of Retrieved Fear Memory
Sue‐Hyun Lee, Jun‐Hyeok Choi, Nuribalhae Lee, Hye‐Ryeon Lee, Jae‐Ick Kim, Nam‐Kyung Yu, Sun-Lim Choi, Seung‐Hee Lee, Hyoung Kim, Bong‐Kiun Kaang
SJR Q1Science

Reactivated memory undergoes a rebuilding process that depends on de novo protein synthesis. This suggests that retrieval is dynamic and serves to incorporate new information into preexisting memories. However, little is known about whether or not protein degradation is involved in the reorganization of retrieved memory. We found that postsynaptic proteins were degraded in the hippocampus by polyubiquitination after retrieval of contextual fear memory. Moreover, the infusion of proteasome inhibi

Cellular and Molecular NeuroscienceNeuroscience
3
Article|230 citations·2015
Aldehyde dehydrogenase 1a1 mediates a GABA synthesis pathway in midbrain dopaminergic neurons
Jae‐Ick Kim, Subhashree Ganesan, Sarah Luo, Yu‐Wei Wu, Esther Park, Eric J. Huang, Lu Chen, Jun Ding
SJR Q1Science

Midbrain dopamine neurons are an essential component of the basal ganglia circuitry, playing key roles in the control of fine movement and reward. Recently, it has been demonstrated that γ-aminobutyric acid (GABA), the chief inhibitory neurotransmitter, is co-released by dopamine neurons. Here, we show that GABA co-release in dopamine neurons does not use the conventional GABA-synthesizing enzymes, glutamate decarboxylases GAD65 and GAD67. Our experiments reveal an evolutionarily conserved GABA

Cellular and Molecular NeuroscienceNeuroscience
4
Article|180 citations·2015
Dynamic rewiring of neural circuits in the motor cortex in mouse models of Parkinson's disease
Lili Guo, Huan Xiong, Jae‐Ick Kim, Yu‐Wei Wu, Rupa R. Lalchandani, Yuting Cui, Yu Shu, Tonghui Xu, Jun Ding
SJR Q1Nature NeuroscienceOA
Cellular and Molecular NeuroscienceNeuroscience
5
Article|143 citations·2011
PI3Kγ is required for NMDA receptor–dependent long-term depression and behavioral flexibility
Jae‐Ick Kim, Hye‐Ryeon Lee, Su-Eon Sim, Jinhee Baek, Nam‐Kyung Yu, Jun-Hyeok Choi, Hyoung‐Gon Ko, Yong‐Seok Lee, Soowon Park, Chuljung Kwak, Sung-Ji Ahn, So Yoen Choi
SJR Q1Nature Neuroscience
Cellular and Molecular NeuroscienceNeuroscience
6
Article|93 citations·2020
O-GlcNAcylation regulates dopamine neuron function, survival and degeneration in Parkinson disease
Byeong Eun Lee, Hye Yun Kim, Hyun‐Jin Kim, Hyeongsun Jeong, Byung‐Gyu Kim, Ha-Eun Lee, Ji‐Eun Lee, Han Byeol Kim, Seung Eun Lee, Yong Ryoul Yang, Eugene C. Yi, John A. Hanover
SJR Q1BrainOA

The dopamine system in the midbrain is essential for volitional movement, action selection, and reward-related learning. Despite its versatile roles, it contains only a small set of neurons in the brainstem. These dopamine neurons are especially susceptible to Parkinson's disease and prematurely degenerate in the course of disease progression, while the discovery of new therapeutic interventions has been disappointingly unsuccessful. Here, we show that O-GlcNAcylation, an essential post-translat

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|46 citations·2020
Sequentially induced motor neurons from human fibroblasts facilitate locomotor recovery in a rodent spinal cord injury model
Hyun-Ah Lee, Hye Yeong Lee, Byeong Eun Lee, Daniela Gerovska, Soo Yong Park, Holm Zaehres, Marcos J. Araúzo‐Bravo, Jae‐Ick Kim, Yoon Ha, Hans R. Schöler, Jeong Beom Kim
SJR Q1eLifeOA

Generation of autologous human motor neurons holds great promise for cell replacement therapy to treat spinal cord injury (SCI). Direct conversion allows generation of target cells from somatic cells, however, current protocols are not practicable for therapeutic purposes since converted cells are post-mitotic that are not scalable. Therefore, therapeutic effects of directly converted neurons have not been elucidated yet. Here, we show that human fibroblasts can be converted into induced motor n

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|34 citations·2020
The novel DYRK1A inhibitor KVN93 regulates cognitive function, amyloid-beta pathology, and neuroinflammation
Hyunju Lee, Hanwoong Woo, Ha-Eun Lee, Hyongjun Jeon, Ka‐Young Ryu, Jin Han Nam, Seong Gak Jeon, HyunHee Park, Ji-Soo Lee, Kyung‐Min Han, Sang Min Lee, Jeongyeon Kim
SJR Q1Free Radical Biology and Medicine
PhysiologyMedicine
9
Review|28 citations·2021
The Role of Phospholipase C in GABAergic Inhibition and Its Relevance to Epilepsy
Hye Yun Kim, Pann‐Ghill Suh, Jae‐Ick Kim
SJR Q1International Journal of Molecular SciencesOA

Epilepsy is characterized by recurrent seizures due to abnormal hyperexcitation of neurons. Recent studies have suggested that the imbalance of excitation and inhibition (E/I) in the central nervous system is closely implicated in the etiology of epilepsy. In the brain, GABA is a major inhibitory neurotransmitter and plays a pivotal role in maintaining E/I balance. As such, altered GABAergic inhibition can lead to severe E/I imbalance, consequently resulting in excessive and hypersynchronous neu

Cellular and Molecular NeuroscienceNeuroscience
10
Article|19 citations·2022
L-Type Ca2+ Channel Inhibition Rescues the LPS-Induced Neuroinflammatory Response and Impairments in Spatial Memory and Dendritic Spine Formation
Ji‐Eun Kim, Seong Gak Jeon, Ha-Ram Jeong, HyunHee Park, Jae‐Ick Kim, Hyang‐Sook Hoe
SJR Q1International Journal of Molecular SciencesOA

Ca2+ signaling is implicated in the transition between microglial surveillance and activation. Several L-type Ca2+ channel blockers (CCBs) have been shown to ameliorate neuroinflammation by modulating microglial activity. In this study, we examined the effects of the L-type CCB felodipine on LPS-mediated proinflammatory responses. We found that felodipine treatment significantly diminished LPS-evoked proinflammatory cytokine levels in BV2 microglial cells in an L-type Ca2+ channel-dependent mann

NeurologyNeuroscience
11
Article|19 citations·2023
GABAergic-like dopamine synapses in the brain
Hyunjin Kim, Byungjae Hwang, Maria Reva, Ji-Eun Lee, Byeong Eun Lee, Youngeun Lee, Eun Jeong Cho, Minseok Jeong, Seung Eun Lee, Kyungjae Myung, Ja‐Hyun Baik, Jung‐Hoon Park
SJR Q1Cell ReportsOA

Dopamine synapses play a crucial role in volitional movement and reward-related behaviors, while dysfunction of dopamine synapses causes various psychiatric and neurological disorders. Despite this significance, the true biological nature of dopamine synapses remains poorly understood. Here, we show that dopamine transmission is strongly correlated with GABA co-transmission across the brain and dopamine synapses are structured and function like GABAergic synapses with marked regional heterogenei

Cellular and Molecular NeuroscienceNeuroscience
12
Article|19 citations·2019
Deletion of PLCγ1 in GABAergic neurons increases seizure susceptibility in aged mice
Hye Yun Kim, Yong Ryoul Yang, Hongik Hwang, Haeun Lee, Hyun‐Jun Jang, Jeong-Yeon Kim, Esther Yang, Hyun Kim, Hyewhon Rhim, Pann‐Ghill Suh, Jae‐Ick Kim, Jae‐Ick Kim
SJR Q1Scientific ReportsOA

Abstract Synaptic inhibition plays a fundamental role in the information processing of neural circuits. It sculpts excitatory signals and prevents hyperexcitability of neurons. Owing to these essential functions, dysregulated synaptic inhibition causes a plethora of neurological disorders, including epilepsy, autism, and schizophrenia. Among these disorders, epilepsy is associated with abnormal hyperexcitability of neurons caused by the deficits of GABAergic neuron or decreased GABAergic inhibit

Cellular and Molecular NeuroscienceNeuroscience
13
Article|19 citations·2024
The dopamine analogue CA140 alleviates AD pathology, neuroinflammation, and rescues synaptic/cognitive functions by modulating DRD1 signaling or directly binding to Abeta
Sehyun Chae, Hyunju Lee, Ha-Eun Lee, Ji‐Eun Kim, Yoo Joo Jeong, Yuxi Lin, Hye Yun Kim, Geoffray Leriche, Rachel S. Ehrlich, Sascha Castro Lingl, Min‐Duk Seo, Young‐Ho Lee
SJR Q1Journal of NeuroinflammationOA

BACKGROUND: We recently reported that the dopamine (DA) analogue CA140 modulates neuroinflammatory responses in lipopolysaccharide-injected wild-type (WT) mice and in 3-month-old 5xFAD mice, a model of Alzheimer's disease (AD). However, the effects of CA140 on Aβ/tau pathology and synaptic/cognitive function and its molecular mechanisms of action are unknown. METHODS: To investigate the effects of CA140 on cognitive and synaptic function and AD pathology, 3-month-old WT mice or 8-month-old (aged

NeurologyNeuroscience
14
Article|16 citations·2022
mtIF3 is locally translated in axons and regulates mitochondrial translation for axonal growth
So-Yeon Lee, Dongkeun Park, Chunghun Lim, Jae‐Ick Kim, Kyung‐Tai Min
SJR Q1BMC BiologyOA

BACKGROUND: The establishment and maintenance of functional neural connections relies on appropriate distribution and localization of mitochondria in neurites, as these organelles provide essential energy and metabolites. In particular, mitochondria are transported to axons and support local energy production to maintain energy-demanding neuronal processes including axon branching, growth, and regeneration. Additionally, local protein synthesis is required for structural and functional changes i

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|7 citations·2023
PLCγ1 in dopamine neurons critically regulates striatal dopamine release via VMAT2 and synapsin III
Hye Yun Kim, Ji-Eun Lee, Hyunjin Kim, Byeong Eun Lee, Jae‐Wook Jeong, Eun Jeong Cho, Hyun‐Jun Jang, Kyeong Jin Shin, Min Ji Kim, Young Chan Chae, Seung Eun Lee, Kyungjae Myung
SJR Q1Experimental & Molecular MedicineOA

Dopamine neurons are essential for voluntary movement, reward learning, and motivation, and their dysfunction is closely linked to various psychological and neurodegenerative diseases. Hence, understanding the detailed signaling mechanisms that functionally modulate dopamine neurons is crucial for the development of better therapeutic strategies against dopamine-related disorders. Phospholipase Cγ1 (PLCγ1) is a key enzyme in intracellular signaling that regulates diverse neuronal functions in th

Cellular and Molecular NeuroscienceNeuroscience

Research Areas

Cellular and Molecular NeuroscienceMolecular BiologySocial PsychologyGeneticsAerospace EngineeringNeurology

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