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Chang-Wook Jeong

Korea Advanced Institute of Science and Technology · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Chang-Wook Jeong's research lab focuses on the molecular and synaptic mechanisms underlying neurodevelopmental and psychiatric disorders, with a central emphasis on the roles of postsynaptic scaffolding proteins such as Shank2 and Shank3 in synapse development, function, and behavior. The lab investigates how genetic mutations, synaptic zinc dynamics, and somatic mosaicism contribute to autism spectrum disorders and related conditions, using advanced mouse models, behavioral analyses, and high-depth whole-genome sequencing in human brains. Their work bridges molecular neuroscience with translational insights, aiming to uncover novel therapeutic targets and mechanisms, including the potential of zinc modulation in rescuing social deficits.

autism spectrum disorderssynaptic scaffolding proteinszinc signalingsomatic mosaicismmouse models of neurodevelopment

Research Overview

Papers
31
Total Citations
2,028
Papers (5y)
16
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
16total
2022
2023
2024
2025
2026
Citations per year (5y)
427total
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|163 citations·2018
Sexually dimorphic behavior, neuronal activity, and gene expression in Chd8-mutant mice
Hwajin Jung, Haram Park, Yeonsoo Choi, Hyojin Kang, Eunee Lee, Hanseul Kweon, Junyeop Daniel Roh, Jacob Ellegood, Woochul Choi, Jaeseung Kang, Issac Rhim, Su‐Yeon Choi
SJR Q1Nature Neuroscience
GeneticsBiochemistry, Genetics and Molecular Biology
3
Article|153 citations·2015
Shank3-mutant mice lacking exon 9 show altered excitation/inhibition balance, enhanced rearing, and spatial memory deficit
Jiseok Lee, Changuk Chung, Seungmin Ha, Dongmin Lee, Do Young ‍Kim, Hyun Kim, Eunjoon Kim
SJR Q1Frontiers in Cellular NeuroscienceOA

Shank3 is a postsynaptic scaffolding protein implicated in synapse development and autism spectrum disorders. The Shank3 gene is known to produce diverse splice variants whose functions have not been fully explored. In the present study, we generated mice lacking Shank3 exon 9 (Shank3 (Δ9) mice), and thus missing five out of 10 known Shank3 splice variants containing the N-terminal ankyrin repeat region, including the longest splice variant, Shank3a. Our X-gal staining results revealed that Shan

GeneticsBiochemistry, Genetics and Molecular Biology
4
Article|121 citations·2016
Cerebellar Shank2 Regulates Excitatory Synapse Density, Motor Coordination, and Specific Repetitive and Anxiety-Like Behaviors
Seungmin Ha, Dong‐Won Lee, Yi Sul Cho, Changuk Chung, Ye-Eun Yoo, Jihye Kim, Jiseok Lee, Woohyun Kim, Hyosang Kim, Yong Chul Bae, Keiko Tanaka, Eunjoon Kim
SJR Q1Journal of NeuroscienceOA

Shank2 is a multidomain scaffolding protein implicated in the structural and functional coordination of multiprotein complexes at excitatory postsynaptic sites as well as in psychiatric disorders, including autism spectrum disorders. While Shank2 is strongly expressed in the cerebellum, whether Shank2 regulates cerebellar excitatory synapses, or contributes to the behavioral abnormalities observed in Shank2 −/− mice, remains unexplored. Here we show that Shank2 −/− mice show reduced excitatory s

Cellular and Molecular NeuroscienceNeuroscience
5
Article|111 citations·2023
Comprehensive multi-omic profiling of somatic mutations in malformations of cortical development
Changuk Chung, Xiaoxu Yang, Taejeong Bae, Keng Ioi Vong, Swapnil Mittal, Catharina Donkels, H. Westley Phillips, Zhen Li, Ashley P.L. Marsh, Martin W. Breuss, Laurel Ball, Camila Araújo Bernardino Garcia
SJR Q1Nature GeneticsOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|110 citations·2015
Trans-synaptic zinc mobilization improves social interaction in two mouse models of autism through NMDAR activation
Eun‐Jae Lee, Hyejin Lee, Tzyy‐Nan Huang, Changuk Chung, Wangyong Shin, Kyungdeok Kim, Jae‐Young Koh, Yi‐Ping Hsueh, Eunjoon Kim
SJR Q1Nature CommunicationsOA

Genetic aspects of autism spectrum disorders (ASDs) have recently been extensively explored, but environmental influences that affect ASDs have received considerably less attention. Zinc (Zn) is a nutritional factor implicated in ASDs, but evidence for a strong association and linking mechanism is largely lacking. Here we report that trans-synaptic Zn mobilization rapidly rescues social interaction in two independent mouse models of ASD. In mice lacking Shank2, an excitatory postsynaptic scaffol

Cognitive NeuroscienceNeuroscience
7
Article|90 citations·2018
Cell-Type-SpecificShank2Deletion in Mice Leads to Differential Synaptic and Behavioral Phenotypes
Ryunhee Kim, Jihye Kim, Changuk Chung, Seungmin Ha, Seungjoon Lee, Eunee Lee, Ye-Eun Yoo, Woohyun Kim, Wangyong Shin, Eunjoon Kim
SJR Q1Journal of NeuroscienceOA

Shank2 is an excitatory postsynaptic scaffolding protein implicated in synaptic regulation and psychiatric disorders including autism spectrum disorders. Conventional Shank2 -mutant ( Shank2 −/− ) mice display several autistic-like behaviors, including social deficits, repetitive behaviors, hyperactivity, and anxiety-like behaviors. However, cell-type-specific contributions to these behaviors have remained largely unclear. Here, we deleted Shank2 in specific cell types and found that male mice l

GeneticsBiochemistry, Genetics and Molecular Biology
8
Article|72 citations·2022
Analysis of somatic mutations in 131 human brains reveals aging-associated hypermutability
Taejeong Bae, Liana Fasching, Yifan Wang, Joo Heon Shin, Milovan Šuvakov, Yeongjun Jang, Scott Norton, Caroline Dias, Jessica Mariani, Alexandre Jourdon, Feinan Wu, Arijit Panda
SJR Q1ScienceOA

We analyzed 131 human brains (44 neurotypical, 19 with Tourette syndrome, 9 with schizophrenia, and 59 with autism) for somatic mutations after whole genome sequencing to a depth of more than 200×. Typically, brains had 20 to 60 detectable single-nucleotide mutations, but ~6% of brains harbored hundreds of somatic mutations. Hypermutability was associated with age and damaging mutations in genes implicated in cancers and, in some brains, reflected in vivo clonal expansions. Somatic duplications,

GeneticsBiochemistry, Genetics and Molecular Biology
9
Article|71 citations·2018
Early Correction of N-Methyl-D-Aspartate Receptor Function Improves Autistic-like Social Behaviors in Adult Shank2−/− Mice
Changuk Chung, Seungmin Ha, Hyojin Kang, Jiseok Lee, Seung Min Um, Hai Yan, Ye-Eun Yoo, Taesun Yoo, Hwajin Jung, Dong‐Won Lee, Eunee Lee, Seungjoon Lee
SJR Q1Biological Psychiatry
Cognitive NeuroscienceNeuroscience
10
Article|63 citations·2022
Somatic mosaicism reveals clonal distributions of neocortical development
Martin W. Breuss, Xiaoxu Yang, Johannes C. M. Schlachetzki, Danny Antaki, Addison J. Lana, Xin Xu, Changuk Chung, Guoliang Chai, Valentina Stanley, Qiong Song, Traci Fang Newmeyer, An T. Nguyen
SJR Q1NatureOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|52 citations·2024
Cell-type-resolved mosaicism reveals clonal dynamics of the human forebrain
Changuk Chung, Xiaoxu Yang, Robert F. Hevner, Katie Kennedy, Keng Ioi Vong, Yang Liu, Arzoo Patel, Rahul Nedunuri, Scott T. Barton, Geoffroy Noël, Chelsea Barrows, Valentina Stanley
SJR Q1NatureOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|45 citations·2021
A Human Pleiotropic Multiorgan Condition Caused by Deficient Wnt Secretion
Guoliang Chai, Emmanuelle Szenker‐Ravi, Changuk Chung, Zhen Li, Lu Wang, Muznah Khatoo, Trevor G Marshall, Nan Jiang, Xiaoxu Yang, Jennifer McEvoy‐Venneri, Valentina Stanley, Paula Anzenberg
SJR Q1New England Journal of MedicineOA

Genetic variations affecting a central Wnt regulator caused syndromic structural birth defects. Results from mouse models suggest that what we have named Zaki syndrome is a potentially preventable disorder. (Funded by the National Institutes of Health and others.).

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|43 citations·2023
Schizophrenia-associated somatic copy-number variants from 12,834 cases reveal recurrent NRXN1 and ABCB11 disruptions
Eduardo A. Maury, Maxwell A. Sherman, Giulio Genovese, Thomas G. Gilgenast, Tushar Kamath, S.J. Burris, Prashanth Rajarajan, Erin Flaherty, Schahram Akbarian, Andrew Chess, Steven A. McCarroll, Po‐Ru Loh
SJR Q1Cell GenomicsOA

While germline copy-number variants (CNVs) contribute to schizophrenia (SCZ) risk, the contribution of somatic CNVs (sCNVs)—present in some but not all cells—remains unknown. We identified sCNVs using blood-derived genotype arrays from 12,834 SCZ cases and 11,648 controls, filtering sCNVs at loci recurrently mutated in clonal blood disorders. Likely early-developmental sCNVs were more common in cases (0.91%) than controls (0.51%, p = 2.68e−4), with recurrent somatic deletions of exons 1–5 of the

GeneticsBiochemistry, Genetics and Molecular Biology
14
Article|39 citations·2023
Control-independent mosaic single nucleotide variant detection with DeepMosaic
Xiaoxu Yang, Xin Xu, Martin W. Breuss, Danny Antaki, Laurel Ball, Changuk Chung, Jiawei Shen, Chen Li, Renee D. George, Yifan Wang, Taejeong Bae, Yuhe Cheng
SJR Q1Nature BiotechnologyOA
Cancer ResearchBiochemistry, Genetics and Molecular Biology
15
Article|38 citations·2021
Excitatory synapses and gap junctions cooperate to improve Pv neuronal burst firing and cortical social cognition in Shank2-mutant mice
Eunee Lee, Seungjoon Lee, Jae Jin Shin, Woochul Choi, Changuk Chung, Suho Lee, Jihye Kim, Seungmin Ha, Ryunhee Kim, Taesun Yoo, Ye-Eun Yoo, Jisoo Kim
SJR Q1Nature CommunicationsOA

Abstract NMDA receptor (NMDAR) and GABA neuronal dysfunctions are observed in animal models of autism spectrum disorders, but how these dysfunctions impair social cognition and behavior remains unclear. We report here that NMDARs in cortical parvalbumin (Pv)-positive interneurons cooperate with gap junctions to promote high-frequency (>80 Hz) Pv neuronal burst firing and social cognition. Shank2 –/– mice, displaying improved sociability upon NMDAR activation, show impaired cortical social rep

Cognitive NeuroscienceNeuroscience

Research Areas

GeneticsMolecular BiologyCognitive NeuroscienceCellular and Molecular NeuroscienceCancer ResearchPediatrics, Perinatology and Child Health

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