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Young-Seok Joo

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

About the Lab

Professor Young-Seok Joo's research lab specializes in understanding the molecular mechanisms underlying cancer genomics, viral pathogenesis, and mitochondrial genome dynamics. The lab integrates multi-omics approaches—including whole-genome and transcriptome sequencing, single-cell profiling, and computational modeling—to dissect somatic mutational processes, mitochondrial-nuclear genome fusions, and host-virus interactions. A key focus is uncovering the biological and evolutionary forces shaping viral and cancer genome evolution, particularly in the context of human diseases such as lung cancer and SARS-CoV-2 infection. The lab also develops computational tools, such as Mutalisk, to decode the complex interplay between genomic architecture, epigenetics, and mutational signatures.

cancer genomicsviral evolutionmitochondrial DNAmutational signatureshost-pathogen interaction

Research Overview

Papers
282
Total Citations
26,890
Papers (5y)
148
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
148total
2022
2023
2024
2025
2026
Citations per year (5y)
830total
20222023202420252026

Selected Papers

15
1
Article|500 citations·2014
Origins and functional consequences of somatic mitochondrial DNA mutations in human cancer
Young Seok Ju, Ludmil B. Alexandrov, Moritz Gerstung, Sancha Martin, Serena Nik-Zainal, Manasa Ramakrishna, Helen Davies, Elli Papaemmanuil, Gunes Gundem, Adam Shlien, Niccolò Bolli, Sam Behjati
SJR Q1eLifeOA

Recent sequencing studies have extensively explored the somatic alterations present in the nuclear genomes of cancers. Although mitochondria control energy metabolism and apoptosis, the origins and impact of cancer-associated mutations in mtDNA are unclear. In this study, we analyzed somatic alterations in mtDNA from 1675 tumors. We identified 1907 somatic substitutions, which exhibited dramatic replicative strand bias, predominantly C > T and A > G on the mitochondrial heavy strand. This strand

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|483 citations·2011
A transforming KIF5B and RET gene fusion in lung adenocarcinoma revealed from whole-genome and transcriptome sequencing
Young Seok Ju, Won‐Chul Lee, Jong-Yeon Shin, Seungbok Lee, Thomas Bleazard, Jae‐Kyung Won, Young Tae Kim, Jong‐Il Kim, Jin Hyoung Kang, Jeong‐Sun Seo
SJR Q1Genome ResearchOA

The identification of the molecular events that drive cancer transformation is essential to the development of targeted agents that improve the clinical outcome of lung cancer. Many studies have reported genomic driver mutations in non-small-cell lung cancers (NSCLCs) over the past decade; however, the molecular pathogenesis of >40% of NSCLCs is still unknown. To identify new molecular targets in NSCLCs, we performed the combined analysis of massively parallel whole-genome and transcriptome sequ

Pulmonary and Respiratory MedicineMedicine
3
Article|309 citations·2017
Somatic mutations reveal asymmetric cellular dynamics in the early human embryo
Young Seok Ju, Iñigo Martincorena, Moritz Gerstung, Mia Petljak, Ludmil B. Alexandrov, Raheleh Rahbari, David C. Wedge, Helen Davies, Manasa Ramakrishna, Anthony Fullam, Sancha Martin, Christopher Alder
SJR Q1NatureOA
Cancer ResearchBiochemistry, Genetics and Molecular Biology
4
Article|268 citations·2020
Three-Dimensional Human Alveolar Stem Cell Culture Models Reveal Infection Response to SARS-CoV-2
Jeonghwan Youk, Taewoo Kim, Kelly V. Evans, Young-Il Jeong, Yong Suk Hur, Seon Pyo Hong, Je Hyoung Kim, Kijong Yi, Su Yeon Kim, Kwon Joong Na, Thomas Bleazard, Ho Min Kim
SJR Q1Cell stem cellOA

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), which is the cause of a present pandemic, infects human lung alveolar type 2 (hAT2) cells. Characterizing pathogenesis is crucial for developing vaccines and therapeutics. However, the lack of models mirroring the cellular physiology and pathology of hAT2 cells limits the study. Here, we develop a feeder-free, long-term, three-dimensional (3D) culture technique for hAT2 cells derived from primary human lung tissue and investigate infe

Infectious DiseasesMedicine
5
Article|246 citations·2019
Tracing Oncogene Rearrangements in the Mutational History of Lung Adenocarcinoma
Jake June-Koo Lee, Seongyeol Park, Hansol Park, Sehui Kim, Jongkeun Lee, Junehawk Lee, Jeonghwan Youk, Kijong Yi, Yohan An, In Kyu Park, Chang Hyun Kang, Doo Hyun Chung
SJR Q1CellOA
Cancer ResearchBiochemistry, Genetics and Molecular Biology
6
Article|173 citations·2015
Frequent somatic transfer of mitochondrial DNA into the nuclear genome of human cancer cells
Young Seok Ju, José M. C. Tubío, William Mifsud, Beiyuan Fu, Helen Davies, Manasa Ramakrishna, Yilong Li, Lucy Yates, Gunes Gundem, Patrick Tarpey, Sam Behjati, Elli Papaemmanuil
SJR Q1Genome ResearchOA

Mitochondrial genomes are separated from the nuclear genome for most of the cell cycle by the nuclear double membrane, intervening cytoplasm, and the mitochondrial double membrane. Despite these physical barriers, we show that somatically acquired mitochondrial-nuclear genome fusion sequences are present in cancer cells. Most occur in conjunction with intranuclear genomic rearrangements, and the features of the fusion fragments indicate that nonhomologous end joining and/or replication-dependent

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|144 citations·2021
Clonal dynamics in early human embryogenesis inferred from somatic mutation
Seongyeol Park, Nanda Maya Mali, Ryul Kim, Jeong‐Woo Choi, Junehawk Lee, Joonoh Lim, Jung Min Park, Jung Woo Park, Dong-Hyun Kim, Taewoo Kim, Kijong Yi, June Hyug Choi
SJR Q1Nature
Cancer ResearchBiochemistry, Genetics and Molecular Biology
8
Article|139 citations·2011
Extensive genomic and transcriptional diversity identified through massively parallel DNA and RNA sequencing of eighteen Korean individuals
Young Seok Ju, Jong‐Il Kim, Sheehyun Kim, Dongwan Hong, Hansoo Park, Jong-Yeon Shin, Seungbok Lee, Won‐Chul Lee, Su-Jung Kim, Saet-Byeol Yu, Sung Soo Park, Seung-Hyun Seo
SJR Q1Nature Genetics
Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|94 citations·2018
Mutalisk: a web-based somatic MUTation AnaLyIS toolKit for genomic, transcriptional and epigenomic signatures
Jongkeun Lee, Jin Seok Lee, Jake June-Koo Lee, Jongkeun Park, Youngoh Kwon, Seongyeol Park, Hyonho Chun, Young Seok Ju, Dongwan Hong
SJR Q1Nucleic Acids ResearchOA

Somatic genome mutations occur due to combinations of various intrinsic/extrinsic mutational processes and DNA repair mechanisms. Different molecular processes frequently generate different signatures of somatic mutations in their own favored contexts. As a result, the regional somatic mutation rate is dependent on the local DNA sequence, the DNA replication/RNA transcription dynamics and epigenomic chromatin organization landscape in the genome. Here, we propose an online computational framewor

Cancer ResearchBiochemistry, Genetics and Molecular Biology
10
Article|87 citations·2021
Mutational spectrum of SARS-CoV-2 during the global pandemic
Kijong Yi, Su Yeon Kim, Thomas Bleazard, Taewoo Kim, Jeonghwan Youk, Young Seok Ju
SJR Q1Experimental & Molecular MedicineOA

Viruses accumulate mutations under the influence of natural selection and host-virus interactions. Through a systematic comparison of 351,525 full viral genome sequences collected during the recent COVID-19 pandemic, we reveal the spectrum of SARS-CoV-2 mutations. Unlike those of other viruses, the mutational spectrum of SARS-CoV-2 exhibits extreme asymmetry, with a much higher rate of C>U than U>C substitutions, as well as a higher rate of G>U than U>G substitutions. This suggests directional g

GeneticsBiochemistry, Genetics and Molecular Biology
11
Article|76 citations·2016
Complex chromosomal rearrangements by single catastrophic pathogenesis in NUT midline carcinoma
Jake June-Koo Lee, Sandra Louzada, Yu An, Seon Young Kim, Seungtaek Kim, Jeonghwan Youk, S. Park, Sun Hoe Koo, Bhumsuk Keam, Yoon Kyung Jeon, Ja‐Lok Ku, Fengtang Yang
SJR Q1Annals of OncologyOA

Taken together, our findings suggest that a single catastrophic event in proliferating normal cells could be sufficient for neoplastic transformation into NMCs.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|68 citations·2021
Single-cell transcriptome of bronchoalveolar lavage fluid reveals sequential change of macrophages during SARS-CoV-2 infection in ferrets
Jeong Seok Lee, June‐Young Koh, Kijong Yi, Young‐Il Kim, Su‐Jin Park, Eun-Ha Kim, Se‐Mi Kim, Sung Ho Park, Young Seok Ju, Young Ki Choi, Su‐Hyung Park, Young Ki Choi
SJR Q1Nature CommunicationsOA

Few studies have used a longitudinal approach to describe the immune response to SARS-CoV-2 infection. Here, we perform single-cell RNA sequencing of bronchoalveolar lavage fluid cells longitudinally obtained from SARS-CoV-2-infected ferrets. Landscape analysis of the lung immune microenvironment shows distinct changes in cell proportions and characteristics compared to uninfected control, at 2 and 5 days post-infection (dpi). Macrophages are classified into 10 distinct subpopulations with trans

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|63 citations·2023
Widespread somatic L1 retrotransposition in normal colorectal epithelium
Chang Hyun Nam, Jeonghwan Youk, Jeong Yeon Kim, Joonoh Lim, Jung Woo Park, Soo A Oh, Hyun Jung Lee, Ji Won Park, Hyein Won, Yunah Lee, Seung‐Yong Jeong, Dong-Sung Lee
SJR Q1NatureOA

Abstract Throughout an individual’s lifetime, genomic alterations accumulate in somatic cells 1–11 . However, the mutational landscape induced by retrotransposition of long interspersed nuclear element-1 (L1), a widespread mobile element in the human genome 12–14 , is poorly understood in normal cells. Here we explored the whole-genome sequences of 899 single-cell clones established from three different cell types collected from 28 individuals. We identified 1,708 somatic L1 retrotransposition e

Plant ScienceAgricultural and Biological Sciences
14
Article|41 citations·2020
The genome-wide landscape of C:G > T:A polymorphism at the CpG contexts in the human population
Jeonghwan Youk, Yohan An, Seongyeol Park, Jake June-Koo Lee, Young Seok Ju
SJR Q1BMC GenomicsOA

BACKGROUND: The C:G > T:A substitution at the CpG dinucleotide contexts is the most frequent substitution type in genome evolution. The mutational process is obviously ongoing in the human germline; however, its impact on common and rare genomic polymorphisms has not been comprehensively investigated yet. Here we observed the landscape and dynamics of C:G > T:A substitutions from population-scale human genome sequencing datasets including ~ 4300 whole-genomes from the 1000 Genomes and the pan-ca

Cancer ResearchBiochemistry, Genetics and Molecular Biology
15
Article|36 citations·2024
Mitochondrial DNA mosaicism in normal human somatic cells
Jisong An, Chang Hyun Nam, Ryul Kim, Yunah Lee, Hyein Won, Seongyeol Park, Won Hee Lee, Hansol Park, Sung-Soo Yoon, Yohan An, Jie‐Hyun Kim, Jong Kwan Jun
SJR Q1Nature GeneticsOA

Abstract Somatic cells accumulate genomic alterations with age; however, our understanding of mitochondrial DNA (mtDNA) mosaicism remains limited. Here we investigated the genomes of 2,096 clones derived from three cell types across 31 donors, identifying 6,451 mtDNA variants with heteroplasmy levels of ≳0.3%. While the majority of these variants were unique to individual clones, suggesting stochastic acquisition with age, 409 variants (6%) were shared across multiple embryonic lineages, indicat

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Cancer ResearchMolecular BiologyGeneticsNeurologyOncologyPulmonary and Respiratory Medicine

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