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Kim Heon Seok

Hanyang University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Kim Heon Seok's research lab specializes in functional genomics and genome engineering, with a focus on developing and applying CRISPR-based technologies to dissect gene function, model human diseases, and identify therapeutic targets. The lab pioneers innovative screening platforms—ranging from pooled and arrayed CRISPR screens to in vivo imaging probes—enabling high-resolution dissection of cellular responses to drugs, viruses, and immune challenges. A central theme is the functional characterization of genetic variants, particularly those of uncertain significance, using precision genome editing and high-throughput sequencing. The lab also explores novel mechanisms of DNA repair and cellular transport to uncover new biological insights and therapeutic opportunities.

CRISPR screeninggenome editingfunctional genomicsinflammation imagingvariant characterization

Research Overview

Papers
66
Total Citations
2,988
Papers (5y)
53
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
53total
2021
2022
2023
2024
2025
Citations per year (5y)
403total
20212022202320242025

Selected Papers

15
1
Article|1,377 citations·2013
Analysis of off-target effects of CRISPR/Cas-derived RNA-guided endonucleases and nickases
Seung Woo Cho, Sojung Kim, Yongsub Kim, Jiyeon Kweon, Heon Seok Kim, Sangsu Bae, Jin‐Soo Kim
SJR Q1Genome ResearchOA

RNA-guided endonucleases (RGENs), derived from the prokaryotic adaptive immune system known as CRISPR/Cas, enable targeted genome engineering in cells and organisms. RGENs are ribonucleoproteins that consist of guide RNA and Cas9, a protein component originated from Streptococcus pyogenes. These enzymes cleave chromosomal DNA, whose sequence is complementary, to guide RNA in a targeted manner, producing site-specific DNA double-strand breaks (DSBs), the repair of which gives rise to targeted gen

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|453 citations·2018
Adenine base editing in mouse embryos and an adult mouse model of Duchenne muscular dystrophy
Seuk-Min Ryu, Taeyoung Koo, Kyoungmi Kim, Kayeong Lim, Gayoung Baek, Sang‐Tae Kim, Heon Seok Kim, Da-eun Kim, Hyunji Lee, Eugene Chung, Jin‐Soo Kim
SJR Q1Nature Biotechnology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
letter|391 citations·2014
Microhomology-based choice of Cas9 nuclease target sites
Sangsu Bae, Jiyeon Kweon, Heon Seok Kim, Jin‐Soo Kim
SJR Q1Nature Methods
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|137 citations·2019
Adenine base editors catalyze cytosine conversions in human cells
Heon Seok Kim, You Kyeong Jeong, Junho K. Hur, Jin‐Soo Kim, Sangsu Bae
SJR Q1Nature Biotechnology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|77 citations·2019
Imaging inflammation using an activated macrophage probe with Slc18b1 as the activation-selective gating target
Sung Jin Park, Beomsue Kim, Sejong Choi, Sivaraman Balasubramaniam, Sung‐Chan Lee, Jung Yeol Lee, Heon Seok Kim, Jun-Young Kim, Jong-Jin Kim, Yong‐An Lee, Nam‐Young Kang, Jin‐Soo Kim
SJR Q1Nature CommunicationsOA

Activated macrophages have the potential to be ideal targets for imaging inflammation. However, probe selectivity over non-activated macrophages and probe delivery to target tissue have been challenging. Here, we report a small molecule probe specific for activated macrophages, called CDg16, and demonstrate its application to visualizing inflammatory atherosclerotic plaques in vivo. Through a systematic transporter screen using a CRISPR activation library, we identify the orphan transporter Slc1

PhysiologyBiochemistry, Genetics and Molecular Biology
6
Article|77 citations·2021
Integrative single-cell analysis of allele-specific copy number alterations and chromatin accessibility in cancer
Chi-Yun Wu, Billy T. Lau, Heon Seok Kim, Anuja Sathe, Susan M. Grimes, Hanlee P. Ji, Nancy R. Zhang
SJR Q1Nature BiotechnologyOA
Cancer ResearchBiochemistry, Genetics and Molecular Biology
7
Article|60 citations·2018
Arrayed CRISPR screen with image-based assay reliably uncovers host genes required for coxsackievirus infection
Heon Seok Kim, Kyungjin Lee, Seong‐Jun Kim, Sungchan Cho, Hye Jin Shin, Chonsaeng Kim, Jin‐Soo Kim
SJR Q1Genome ResearchOA

Pooled CRISPR screens based on lentiviral systems have been widely applied to identify the effect of gene knockout on cellular phenotype. Although many screens were successful, they also have the limitation that genes conferring mild phenotypes or those essential for growth can be overlooked, as every genetic perturbation is incorporated in the same population. Arrayed screens, on the other hand, incorporate a single genetic perturbation in each well and could overcome these limitations. However

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Review|54 citations·2024
Recent advances in CRISPR-based functional genomics for the study of disease-associated genetic variants
Heon Seok Kim, Jiyeon Kweon, Yongsub Kim
SJR Q1Experimental & Molecular MedicineOA

Advances in sequencing technology have greatly increased our ability to gather genomic data, yet understanding the impact of genetic mutations, particularly variants of uncertain significance (VUSs), remains a challenge in precision medicine. The CRISPR‒Cas system has emerged as a pivotal tool for genome engineering, enabling the precise incorporation of specific genetic variations, including VUSs, into DNA to facilitate their functional characterization. Additionally, the integration of CRISPR‒

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|46 citations·2024
Large DNA deletions occur during DNA repair at 20-fold lower frequency for base editors and prime editors than for Cas9 nucleases
Gue‐Ho Hwang, Seok‐Hoon Lee, Minsik Oh, Segi Kim, Omer Habib, Hyeon‐Ki Jang, Heon Seok Kim, Youngkuk Kim, Chan Hyuk Kim, Sun Kim, Sangsu Bae
SJR Q1Nature Biomedical EngineeringOA

When used to edit genomes, Cas9 nucleases produce targeted double-strand breaks in DNA. Subsequent DNA-repair pathways can induce large genomic deletions (larger than 100 bp), which constrains the applicability of genome editing. Here we show that Cas9-mediated double-strand breaks induce large deletions at varying frequencies in cancer cell lines, human embryonic stem cells and human primary T cells, and that most deletions are produced by two repair pathways: end resection and DNA-polymerase t

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|40 citations·2017
CRISPR/Cas9-mediated gene knockout screens and target identification via whole-genome sequencing uncover host genes required for picornavirus infection
Heon Seok Kim, Kyungjin Lee, Sangsu Bae, Jeongbin Park, Chong-Kyo Lee, Meehyein Kim, Eunji Kim, Minju Kim, Seokjoong Kim, Chonsaeng Kim, Jin‐Soo Kim
SJR Q1Journal of Biological ChemistryOA

three sgRNAs per gene). These plasmid libraries were co-transfected with a Cas9-expression plasmid into human cells, which were then treated with cytotoxic drugs or viruses. Only cells lacking key factors essential for cytotoxic drug metabolism or viral infection were able to survive. Genomic DNA isolated from cells that survived these challenges was subjected to WGS to directly identify CRISPR/Cas9-mediated causal mutations essential for cell survival. With this approach, we were able to identi

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Review|34 citations·2021
New approaches to moderate CRISPR-Cas9 activity: Addressing issues of cellular uptake and endosomal escape
Maja van Hees, Sofie Slott, Anders Højgaard Hansen, Heon Seok Kim, Hanlee P. Ji, Kira Astakhova
SJR Q1Molecular TherapyOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|31 citations·2021
CReVIS-Seq: A highly accurate and multiplexable method for genome-wide mapping of lentiviral integration sites
Heon Seok Kim, Gue‐Ho Hwang, Hyomin K. Lee, Taegeun Bae, Seong-Ho Park, Yong Jun Kim, Sun Lee, Jae‐Hoon Park, Sangsu Bae, Junho K. Hur
SJR Q1Molecular Therapy — Methods & Clinical DevelopmentOA

Lentiviruses have been widely used as a means of transferring exogenous DNAs into human cells to treat various genetic diseases. Lentiviral vectors are fundamentally integrated into the host genome, but their integration sites are generally unpredictable, which may increase the uncertainty for their use in therapeutics. To determine the viral integration sites in the host genome, several PCR-based methods have been developed. However, the sensitivities of the PCR-based methods are highly depende

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|30 citations·2021
Small-molecule inhibitors of histone deacetylase improve CRISPR-based adenine base editing
Ha Rim Shin, Ji-Eun See, Jiyeon Kweon, Heon Seok Kim, Gi‐Jun Sung, Sojung Park, An-Hee Jang, Gayoung Jang, Kyung‐Chul Choi, Inki Kim, Jin‐Soo Kim, Yongsub Kim
SJR Q1Nucleic Acids ResearchOA

CRISPR-based base editors (BEs) are widely used to induce nucleotide substitutions in living cells and organisms without causing the damaging DNA double-strand breaks and DNA donor templates. Cytosine BEs that induce C:G to T:A conversion and adenine BEs that induce A:T to G:C conversion have been developed. Various attempts have been made to increase the efficiency of both BEs; however, their activities need to be improved for further applications. Here, we describe a fluorescent reporter-based

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|26 citations·2023
Direct measurement of engineered cancer mutations and their transcriptional phenotypes in single cells
Heon Seok Kim, Susan M. Grimes, Tianqi Chen, Anuja Sathe, Billy T. Lau, Gue‐Ho Hwang, Sangsu Bae, Hanlee P. Ji
SJR Q1Nature BiotechnologyOA

Genome sequencing studies have identified numerous cancer mutations across a wide spectrum of tumor types, but determining the phenotypic consequence of these mutations remains a challenge. Here, we developed a high-throughput, multiplexed single-cell technology called TISCC-seq to engineer predesignated mutations in cells using CRISPR base editors, directly delineate their genotype among individual cells and determine each mutation's transcriptional phenotype. Long-read sequencing of the target

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|24 citations·2020
CRISPR-sub: Analysis of DNA substitution mutations caused by CRISPR-Cas9 in human cells
Gue‐Ho Hwang, Jihyeon Yu, Soyeon Yang, Woo Jae Son, Kayeong Lim, Heon Seok Kim, Jin‐Soo Kim, Sangsu Bae
SJR Q1Computational and Structural Biotechnology JournalOA

CRISPR-Cas9 induces DNA cleavages at desired target sites in a guide RNA-dependent manner; DNA editing occurs through the resulting activity of DNA repair processes including non-homologous end joining (NHEJ), which is dominant in mammalian cells. NHEJ repair frequently causes small insertions and deletions (indels) near DNA cleavage sites but only rarely causes nucleotide substitutions. High-throughput sequencing is the primary means of assessing indel and substitution frequencies in bulk popul

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyCancer ResearchPhysiologyImmunologyPhilosophyGeriatrics and Gerontology

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