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Kang-Sik Park

Kyung Hee University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Kang-Sik Park's research lab specializes in molecular and cellular neuroscience, focusing on the regulation of ion channels and synaptic adhesion molecules in neuronal plasticity and synapse formation. The lab investigates how post-translational modifications—particularly phosphorylation and dephosphorylation—modulate ion channel function to control neuronal excitability and homeostasis. Additionally, the lab explores the secretome profiles of mesenchymal stem cells to understand their therapeutic potential in disease modulation. A central theme is the molecular mechanisms underlying synaptic connectivity and neuronal circuit regulation through cell adhesion molecules and scaffolding proteins.

ion channel regulationsynaptic adhesion moleculesneuronal excitabilityphosphorylation signalingmesenchymal stem cell secretome

Research Overview

Papers
39
Total Citations
1,247
Papers (5y)
6
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
6total
2020
2021
2023
2024
2025
Citations per year (5y)
271total
20202021202320242025

Selected Papers

15
1
Article|268 citations·2006
Graded Regulation of the Kv2.1 Potassium Channel by Variable Phosphorylation
Kang-Sik Park, Durga P. Mohapatra, Hiroaki Misonou, James S. Trimmer
SJR Q1Science

Dynamic modulation of ion channels by phosphorylation underlies neuronal plasticity. The Kv2.1 potassium channel is highly phosphorylated in resting mammalian neurons. Activity-dependent Kv2.1 dephosphorylation by calcineurin induces graded hyperpolarizing shifts in voltage-dependent activation, causing suppression of neuronal excitability. Mass spectrometry-SILAC (stable isotope labeling with amino acids in cell culture) identified 16 Kv2.1 phosphorylation sites, of which 7 were dephosphorylate

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|219 citations·2021
Comparative Proteomic Analysis of the Mesenchymal Stem Cells Secretome from Adipose, Bone Marrow, Placenta and Wharton’s Jelly
Sungho Shin, Jeongmin Lee, Yu Mi Kwon, Kang-Sik Park, Jae‐Hoon Jeong, Suk‐Joo Choi, Sa Ik Bang, Jong Wook Chang, Cheolju Lee
SJR Q1International Journal of Molecular SciencesOA

Mesenchymal stem cells (MSCs) have the potential to be a viable therapy against various diseases due to their paracrine effects, such as secretion of immunomodulatory, trophic and protective factors. These cells are known to be distributed within various organs and tissues. Although they possess the same characteristics, MSCs from different sources are believed to have different secretion potentials and patterns, which may influence their therapeutic effects in disease environments. We character

GeneticsMedicine
3
Article|117 citations·2006
Bidirectional Activity-Dependent Regulation of Neuronal Ion Channel Phosphorylation
Hiroaki Misonou, Milena Menegola, Durga P. Mohapatra, Lauren K. Guy, Kang-Sik Park, James S. Trimmer
SJR Q1Journal of NeuroscienceOA

Activity-dependent dephosphorylation of neuronal Kv2.1 channels yields hyperpolarizing shifts in their voltage-dependent activation and homoeostatic suppression of neuronal excitability. We recently identified 16 phosphorylation sites that modulate Kv2.1 function. Here, we show that in mammalian neurons, compared with other regulated sites, such as serine (S)563, phosphorylation at S603 is supersensitive to calcineurin-mediated dephosphorylation in response to kainate-induced seizures in vivo, a

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|105 citations·2015
PTPσ functions as a presynaptic receptor for the glypican-4/LRRTM4 complex and is essential for excitatory synaptic transmission
Ji Seung Ko, Gopal Pramanik, Ji Won Um, Ji Seon Shim, Dongmin Lee, Kee Hun Kim, Gug-Young Chung, Giuseppe Condomitti, Ho Min Kim, Hyun Kim, Joris de Wit, Kang-Sik Park
SJR Q1Proceedings of the National Academy of SciencesOA

Leukocyte common antigen-related receptor protein tyrosine phosphatases--comprising LAR, PTPδ, and PTPσ--are synaptic adhesion molecules that organize synapse development. Here, we identify glypican 4 (GPC-4) as a ligand for PTPσ. GPC-4 showed strong (nanomolar) affinity and heparan sulfate (HS)-dependent interaction with the Ig domains of PTPσ. PTPσ bound only to proteolytically cleaved GPC-4 and formed additional complex with leucine-rich repeat transmembrane protein 4 (LRRTM4) in rat brains.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|83 citations·2007
Trafficking-dependent phosphorylation of Kv1.2 regulates voltage-gated potassium channel cell surface expression
Jae‐Won Yang, Hélène Vacher, Kang-Sik Park, Eliana Clark, James S. Trimmer
SJR Q1Proceedings of the National Academy of SciencesOA

Kv1.2 alpha-subunits are components of low-threshold, rapidly activating voltage-gated potassium (Kv) channels in mammalian neurons. Expression and localization of Kv channels is regulated by trafficking signals encoded in their primary structure. Kv1.2 is unique in lacking strong trafficking signals and in exhibiting dramatic cell-specific differences in trafficking, which is suggestive of conditional trafficking signals. Here we show that a cluster of cytoplasmic C-terminal phosphorylation sit

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|62 citations·2010
Multisite Phosphorylation of Voltage-Gated Sodium Channel α Subunits from Rat Brain
Frank J. Berendt, Kang-Sik Park, James S. Trimmer
SJR Q1Journal of Proteome ResearchOA

Reversible phosphorylation of ion channels underlies cellular plasticity in mammalian neurons. Voltage-gated sodium or Nav channels underlie action potential initiation and propagation, dendritic excitability, and many other aspects of neuronal excitability. Various protein kinases have been suggested to phosphorylate the primary or alpha subunit of Nav channels, affecting diverse aspects of channel function. Previous studies of Nav alpha subunit phosphorylation have led to the identification of

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Review|53 citations·2008
Potassium Channel Phosphorylation in Excitable Cells: Providing Dynamic Functional Variability to a Diverse Family of Ion Channels
Kang-Sik Park, Jae‐Won Yang, Edward Seikel, James S. Trimmer
SJR Q1Physiology

Phosphorylation of potassium channels affects their function and plays a major role in regulating cell physiology. Here, we review previous studies of potassium channel phosphorylation, focusing first on studies employing site-directed mutagenesis of recombinant channels expressed in heterologous cells. We then discuss recent mass spectrometric-based approaches to identify and quantify phosphorylation at specific sites on native and recombinant potassium channels, and newly developed mass spectr

SpectroscopyChemistry
8
Article|41 citations·2018
Cell-penetrating artificial mitochondriatargeting peptide-conjugated metallothionein 1A alleviates mitochondrial damage in Parkinson’s disease models
강영철, 손민욱, 강소라, 임수열, Ying Piao, 임광석, 송민영, 박강식, 김용희, 김영미

An excess of reactive oxygen species (ROS) relative to the antioxidant capacity causes oxidative stress, which plays a role in the development of Parkinson’s disease (PD). Because mitochondria are both sites of ROS generation and targets of ROS damage, the delivery of antioxidants to mitochondria might prevent or alleviate PD. To transduce the antioxidant protein human metallothionein 1A (hMT1A) into mitochondria, we computationally designed a cellpenetrating artificial mitochondria-targeting pe

9
Article|40 citations·2017
Potential urine proteomics biomarkers for primary nephrotic syndrome
Young Wook Choi, Yang‐Gyun Kim, Min‐Young Song, Ju-Young Moon, Kyung Hwan Jeong, Tae‐Won Lee, Chun‐Gyoo Ihm, Kang-Sik Park, Sang Ho Lee
SJR Q1Clinical ProteomicsOA

BACKGROUND: Nephrotic syndrome (NS) is a nonspecific kidney disorder, commonly caused by minimal change disease (MCD), focal segmental glomerulosclerosis (FSGS), and membranous nephropathy (MN). Here we analyzed urinary protein profiles, aiming to discover disease-specific biomarkers of these three common diseases in NS. METHODS: Sixteen urine samples were collected from patients with biopsy-proven NS and healthy controls. After removal of high-abundance proteins, the urinary protein profile was

NephrologyMedicine
10
Article|34 citations·2024
Compartment-specific regulation of NaV1.7 in sensory neurons after acute exposure to TNF-α
Sidharth Tyagi, Grant P. Higerd‐Rusli, Mohammad‐Reza Ghovanloo, Fadia B. Dib-Hajj, Peng Zhao, Shujun Liu, Dong-Hyun Kim, Ji Seon Shim, Kang-Sik Park, Stephen G. Waxman, Jin‐Sung Choi, Sulayman D. Dib‐Hajj
SJR Q1Cell ReportsOA

Tumor necrosis factor α (TNF-α) is a major pro-inflammatory cytokine, important in many diseases, that sensitizes nociceptors through its action on a variety of ion channels, including voltage-gated sodium (Na V ) channels. We show here that TNF-α acutely upregulates sensory neuron excitability and current density of threshold channel Na V 1.7. Using electrophysiological recordings and live imaging, we demonstrate that this effect on Na V 1.7 is mediated by p38 MAPK and identify serine 110 in th

Endocrine and Autonomic SystemsNeuroscience
11
Article|29 citations·2013
A global proteome study of Mycobacterium gilvum PYR-GCK grown on pyrene and glucose reveals the activation of glyoxylate, shikimate and gluconeogenetic pathways through the central carbon metabolism highway
Abimbola Comfort Badejo, Chi-Won Choi, Adegoke Olugboyega Badejo, Kyung‐Hoon Shin, Jung‐Ho Hyun, Yeol-Gyun Lee, Seung Il Kim, Kang-Sik Park, Sang Hoon Kim, Kyoung Hwa Jung, Young‐Ho Chung, Young Gyu Chai
SJR Q1Biodegradation
PollutionEnvironmental Science
12
Article|27 citations·2016
Global analysis of ginsenoside Rg1 protective effects in β-amyloid-treated neuronal cells
Ji Seon Shim, Min‐Young Song, Sung‐Vin Yim, Seung‐Eun Lee, Kang-Sik Park
SJR Q1Journal of Ginseng ResearchOA

Our results suggest that mitochondrial proteins may be related to the protective mechanisms of Rg1 in AD.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|27 citations·2015
Proteomic analysis reveals that the protective effects of ginsenoside Rb1 are associated with the actin cytoskeleton in β-amyloid-treated neuronal cells
Ji Yeon Hwang, Ji Seon Shim, Min‐Young Song, Sung‐Vin Yim, Seung Eun Lee, Kang-Sik Park
SJR Q1Journal of Ginseng ResearchOA

BACKGROUND: The ginsenoside Rb1 (Rb1) is the most abundant compound in the root of Panax ginseng. Recent studies have shown that Rb1 has a neuroprotective effect. However, the mechanisms underlying this effect are still unknown. METHODS: We used stable isotope labeling with amino acids in cell culture, combined with quantitative mass spectrometry, to explore a potential protective mechanism of Rb1 in β-amyloid-treated neuronal cells. RESULTS: A total of 1,231 proteins were commonly identified fr

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|23 citations·2011
Identification of the phosphorylation sites on intact TRPM7 channels from mammalian cells
Tae Yong Kim, Seok Kyo Shin, Min‐Young Song, Ji Eun Lee, Kang-Sik Park
SJR Q2Biochemical and Biophysical Research Communications
Nutrition and DieteticsNursing
15
Article|21 citations·2007
Proteomic Analyses of Kv2.1 Channel Phosphorylation Sites Determining Cell Background-Specific Differences in Function
Kang-Sik Park, Durga P. Mohapatra, James S. Trimmer
SJR Q1ChannelsOA

The K(v)2.1 potassium channel plays an important role in regulating membrane excitability and is highly phosphorylated in mammalian neurons. Our previous results showed that variable phosphorylation of K(v)2.1 at multiple sites allows graded activity-dependent regulation of channel gating. Our previous studies also found functional differences between recombinant K(v)2.1 channels expressed in HEK293 cells and COS-1 cells that were eliminated upon complete dephosphorylation of K(v)2.1. To better

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyNephrologySpectroscopyGeneticsEndocrine and Autonomic SystemsPollution

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