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Jeong Ho Lee

Korea Advanced Institute of Science and Technology · 生化学・遺伝学・分子生物学

研究室紹介

Professor Jeong Ho Lee's research lab focuses on understanding the genetic and molecular mechanisms underlying brain development, neurological disorders, and somatic mosaicism. The lab specializes in identifying somatic mutations in the brain—particularly in genes like MTOR, PI3K-AKT, and ciliary pathway genes—that contribute to epilepsy, Alzheimer’s disease, and ciliopathies. Using advanced genomics, computational methods (such as RePlow for low-VAF mutation detection), and innovative neural interface technologies (e.g., Au nanonetwork-based ECoG systems), the lab bridges genomics, neuroscience, and biomedical engineering to uncover disease mechanisms and develop precision diagnostics. A central theme is the role of somatic mosaicism and cellular signaling pathways in neurodevelopmental and neurodegenerative diseases.

somatic mosaicismneurological disordersgenomic instabilityoptogenetics interfaceciliopathies

Research Overview

Papers
175
Total Citations
6,536
Papers (5y)
65
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)
65total
2021
2022
2023
2024
2025
Citations per year (5y)
1,353total
20212022202320242025

Selected Papers

15
1
Article|696 citations·2012
De novo somatic mutations in components of the PI3K-AKT3-mTOR pathway cause hemimegalencephaly
Jeong Ho Lee, My N. Huynh, Jennifer L. Silhavy, Sangwoo Kim, Tracy Dixon‐Salazar, Andrew Heiberg, Eric Scott, Vineet Bafna, Kiley J. Hill, Adrienne Collazo, Vincent Funari, Carsten Russ
SJR Q1Nature Genetics
GeneticsBiochemistry, Genetics and Molecular Biology
2
Article|645 citations·2018
Human glioblastoma arises from subventricular zone cells with low-level driver mutations
Joo Ho Lee, Jeong Eun Lee, Jee Ye Kahng, Se Hoon Kim, Jun Sung Park, Seon‐Jin Yoon, Ji‐Yong Um, Woo Kyeong Kim, Jake June-Koo Lee, Junseong Park, Eui Hyun Kim, Ji-Hyun Lee
SJR Q1NatureOA
GeneticsMedicine
3
Article|524 citations·2015
Brain somatic mutations in MTOR cause focal cortical dysplasia type II leading to intractable epilepsy
Jae Seok Lim, Woo-Il Kim, Hoon‐Chul Kang, Se Hoon Kim, Ah Hyung Park, Eun-Kyung Park, Young‐Wook Cho, Sangwoo Kim, Ho Min Kim, Jeong A. Kim, Junho Kim, Hwanseok Rhee
SJR Q1Nature MedicineOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|210 citations·2017
Somatic Mutations in TSC1 and TSC2 Cause Focal Cortical Dysplasia
Jae Seok Lim, Ramu Gopalappa, Se Hoon Kim, Suresh Ramakrishna, Minji Lee, Woo-il Kim, Junho Kim, Sang Min Park, Junehawk Lee, Jung‐Hwa Oh, Heung Dong Kim, Chang‐Hwan Park
SJR Q1The American Journal of Human GeneticsOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|159 citations·2019
Brain somatic mutations observed in Alzheimer’s disease associated with aging and dysregulation of tau phosphorylation
Jun Sung Park, Junehawk Lee, Eun Sun Jung, Myeong-Heui Kim, Il Bin Kim, Hyeonju Son, Sangwoo Kim, Sanghyeon Kim, Young Mok Park, Inhee Mook‐Jung, Seok Jong Yu, Jeong Ho Lee
SJR Q1Nature CommunicationsOA

The role of brain somatic mutations in Alzheimer's disease (AD) is not well understood. Here, we perform deep whole-exome sequencing (average read depth 584×) in 111 postmortem hippocampal formation and matched blood samples from 52 patients with AD and 11 individuals not affected by AD. The number of somatic single nucleotide variations (SNVs) in AD brain specimens increases significantly with aging, and the rate of mutation accumulation in the brain is 4.8-fold slower than that in AD blood. Th

GeneticsBiochemistry, Genetics and Molecular Biology
6
Article|141 citations·2019
Precise detection of low-level somatic mutation in resected epilepsy brain tissue
Nam Suk Sim, Ara Ko, Woo Kyeong Kim, Se Hoon Kim, Ju Seong Kim, Kyu‐Won Shim, Eleonora Aronica, Caroline Mijnsbergen, Wim G.M. Spliet, Hyun Yong Koh, Heung Dong Kim, Joon Soo Lee
SJR Q1Acta NeuropathologicaOA
GeneticsBiochemistry, Genetics and Molecular Biology
7
Article|138 citations·2018
BRAF somatic mutation contributes to intrinsic epileptogenicity in pediatric brain tumors
Hyun Yong Koh, Se Hoon Kim, Jaeson Jang, Hyungguk Kim, Sungwook Han, Jae Seok Lim, Geurim Son, Junjeong Choi, Byung Ouk Park, Won Do Heo, Jinju Han, Hyunjoo J. Lee
SJR Q1Nature MedicineOA
GeneticsMedicine
8
Review|133 citations·2019
Roles of Primary Cilia in the Developing Brain
Sang Min Park, Hee Jin Jang, Jeong Ho Lee
SJR Q1Frontiers in Cellular NeuroscienceOA

Essential to development, primary cilia are microtubule-based cellular organelles that protrude from the surface of cells. Acting as cellular antenna, primary cilia play central roles in transducing or regulating several signaling pathways, including Sonic hedgehog (Shh) and Wnt signaling. Defects in primary cilia contribute to a group of syndromic disorders known as "ciliopathies" and can adversely affect development of the brain and other essential organs, including the kidneys, eyes, and live

GeneticsBiochemistry, Genetics and Molecular Biology
9
Article|110 citations·2018
Brain Somatic Mutations in MTOR Disrupt Neuronal Ciliogenesis, Leading to Focal Cortical Dyslamination
Sang Min Park, Jae Seok Lim, Suresh Ramakrishina, Se Hoon Kim, Woo Kyeong Kim, Junehawk Lee, Hoon‐Chul Kang, Jeremy F. Reiter, Dong Seok Kim, Seokjoong Kim, Jeong Ho Lee
SJR Q1NeuronOA
GeneticsBiochemistry, Genetics and Molecular Biology
10
Article|99 citations·2012
Evolutionarily Assembled cis-Regulatory Module at a Human Ciliopathy Locus
Jeong Ho Lee, Jennifer L. Silhavy, Ji Eun Lee, Lihadh Al‐Gazali, Sophie Thomas, Erica E. Davis, Stephanie Bielas, Kiley J. Hill, Miriam Iannicelli, Francesco Brancati, Stacey Gabriel, Carsten Russ
SJR Q1Science

Distinguishing Ciliopathy Cilia were once thought to be evolutionary remnants, but structural defects reveal their importance in signaling pathways and human disease, such as Joubert syndrome. Either of the genes TMEM138 and TMEM216 can be found mutated in phenotypically indistinguishable ciliopathy patients. Interestingly, despite their lack of sequence homology, these genes have always been aligned in head-to-tail configuration during vertebrate evolution. The proteins expressed by these genes

GeneticsBiochemistry, Genetics and Molecular Biology
11
Article|81 citations·2019
The use of technical replication for detection of low-level somatic mutations in next-generation sequencing
Junho Kim, Dachan Kim, Jae Seok Lim, Ju Heon Maeng, Hyeonju Son, Hoon‐Chul Kang, Hojung Nam, Jeong Ho Lee, Sangwoo Kim
SJR Q1Nature CommunicationsOA

Accurate genome-wide detection of somatic mutations with low variant allele frequency (VAF, <1%) has proven difficult, for which generalized, scalable methods are lacking. Herein, we describe a new computational method, called RePlow, that we developed to detect low-VAF somatic mutations based on simple, library-level replicates for next-generation sequencing on any platform. Through joint analysis of replicates, RePlow is able to remove prevailing background errors in next-generation sequencing

Cancer ResearchBiochemistry, Genetics and Molecular Biology
12
Article|73 citations·2020
Artifact‐Free 2D Mapping of Neural Activity In Vivo through Transparent Gold Nanonetwork Array
Jiwon Seo, Ki‐Up Kim, Ki‐Won Seo, Mi Kyung Kim, Sohyeon Jeong, Hyo‐Jung Kim, Jeong‐Wook Ghim, Jeong Ho Lee, Jeong Ho Lee, Nakwon Choi, Jung‐Yong Lee, Jung‐Yong Lee
SJR Q1Advanced Functional Materials

Abstract With the rapid increase in the use of optogenetics to investigate the nervous system, there is a high demand for a neural interface that enables 2D mapping of electrophysiological neural signals with high precision during simultaneous light stimulation. Here, a gold nanonetwork (Au NN)‐based transparent neural electrocorticogram (ECoG) monitoring system is proposed as implantable neural electronics. The neural interface enables accurate 2D mapping of ECoG neural signals without any phot

Cellular and Molecular NeuroscienceNeuroscience
13
Review|64 citations·2021
Genetic Architectures and Cell-of-Origin in Glioblastoma
Hyun Jung Kim, Jung‐Won Park, Jeong Ho Lee
SJR Q2Frontiers in OncologyOA

An aggressive primary brain cancer, glioblastoma (GBM) is the most common cancer of the central nervous system in adults. However, an inability to identify its cell-of-origin has been a fundamental issue hindering further understanding of the nature and pathogenesis of GBM, as well as the development of novel therapeutic targets. Researchers have hypothesized that GBM arises from an accumulation of somatic mutations in neural stem cells (NSCs) and glial precursor cells that confer selective grow

GeneticsMedicine
14
Article|64 citations·2019
Brain somatic mutations in MTOR reveal translational dysregulations underlying intractable focal epilepsy
JangKeun Kim, Jun Cho, Se Hoon Kim, Hoon‐Chul Kang, Dong-Seok Kim, V. Narry Kim, Jeong Ho Lee
SJR Q1Journal of Clinical InvestigationOA

Brain somatic mutations confer genomic diversity in the human brain and cause neurodevelopmental disorders. Recently, brain somatic activating mutations in MTOR have been identified as a major etiology of intractable epilepsy in patients with cortical malformations. However, the molecular genetic mechanism of how brain somatic mutations in MTOR cause intractable epilepsy has remained elusive. In this study, translational profiling of intractable epilepsy mouse models with brain somatic mutations

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|56 citations·2021
Detection of Brain Somatic Mutations in Cerebrospinal Fluid from Refractory Epilepsy Patients
Seyeon Kim, Sara Baldassari, Nam Suk Sim, Mathilde Chipaux, Georg Dorfmüller, Dong Seok Kim, Won Seok Chang, Valérie Taly, Jeong Ho Lee, Stéphanie Baulac
SJR Q1Annals of NeurologyOA

Brain mosaic mutations are a major cause of refractory focal epilepsies with cortical malformations such as focal cortical dysplasia, hemimegalencephaly, malformation of cortical development with oligodendroglial hyperplasia in epilepsy, and ganglioglioma. Here, we collected cerebrospinal fluid (CSF) during epilepsy surgery to search for somatic variants in cell-free DNA (cfDNA) using targeted droplet digital polymerase chain reaction. In 3 of 12 epileptic patients with known somatic mutations p

Cancer ResearchBiochemistry, Genetics and Molecular Biology

Research Areas

GeneticsElectrical and Electronic EngineeringMolecular BiologyCancer ResearchBiomedical EngineeringPsychiatry and Mental health

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